
Flavonoids
Flavonoids are a group of plant metabolites with antioxidant properties that contribute to the color of fruits and flowers. They play a significant role in protecting plants from UV radiation and pathogens. Flavonoids are studied for their potential health benefits, including anti-inflammatory, antiviral, and anticancer properties. They are widely researched in the fields of pharmacology, nutrition, and molecular biology.
Subcategories of "Flavonoids"
- Anthocyanidins(46 products)
- Anthocyanin(46 products)
- Catechin(88 products)
- Chalcones(237 products)
- Pterocarpan(28 products)
Found 2404 products of "Flavonoids"
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3,7,4-Trihydroxy-5-methoxy-8-prenylflavanone, (2R,3S)
CAS:<p>3,7,4-Trihydroxy-5-methoxy-8-prenylflavanone, (2R,3S), is a prenylated flavanone, which is a type of polyphenolic compound. This compound is typically derived from various plant sources, particularly those that produce flavonoids as secondary metabolites. Its structure is characterized by the presence of hydroxyl and methoxy groups, as well as a prenylated side chain, which contribute to its physicochemical properties.</p>Formula:C21H22O6Purity:Min. 95%Molecular weight:370.4 g/mol(S)-Hesperetin
CAS:<p>(S)-Hesperetin is a flavonoid compound, which is a naturally occurring polyphenolic structure. It is predominantly derived from citrus fruits, including oranges and lemons, through the metabolic breakdown of its glycoside form, hesperidin. This transformation occurs in the human body, where hesperidin is hydrolyzed to release hesperetin and other metabolites.</p>Formula:C16H14O6Purity:Min. 95%Molecular weight:302.28 g/molPrunetin-4'-glucoside
CAS:<p>Prunetin-4'-glucoside is a specialized flavonoid compound, categorized as a glucoside, which is derived from natural plant sources. This glycosylated form of prunetin is found in various plants and serves as part of the plant's defense mechanism. Its mode of action involves antioxidative properties that neutralize free radicals, thus protecting cellular structures from oxidative damage. This mechanism is crucial as oxidative stress is implicated in numerous diseases.</p>Formula:C22H22O10Purity:Min. 95%Molecular weight:446.4 g/mol4'-o-Methyllicoflavanone
CAS:<p>4'-O-Methyllicoflavanone is a flavonoid compound, which is a naturally occurring chemical typically found in various plants. It belongs to a class of secondary metabolites known for their wide array of biological activities. The source of 4'-O-Methyllicoflavanone is primarily from plant species, where it serves as a part of the plant’s defense mechanism against environmental stressors and pathogens.</p>Formula:C21H22O5Purity:Min. 95%Molecular weight:354.4 g/mol8-Chloroflavanone
CAS:<p>8-Chloroflavanone is a synthetic flavonoid derivative, which is primarily obtained through chemical synthesis involving the chlorination of flavanone substrates. Its mode of action involves the modulation of various biological pathways, including potential inhibition of specific enzymes and interaction with receptor sites, which may influence cellular signaling mechanisms.</p>Formula:C15H11ClO2Purity:Min. 95%Molecular weight:258.7 g/mol7-Hydroxy-5,8-dimethoxyflavanone
CAS:<p>7-Hydroxy-5,8-dimethoxyflavanone is a naturally occurring flavanone, which is a subcategory of flavonoids commonly found in various plants. This compound is derived from plant sources, often isolated during phytochemical studies examining the secondary metabolites produced by flora. The mode of action of 7-Hydroxy-5,8-dimethoxyflavanone involves modulating various biochemical pathways, potentially influencing enzymatic activity and signal transduction mechanisms. This flavanone has garnered scientific interest due to its reported bioactive properties, such as antioxidant and anti-inflammatory effects. <br><br>Uses and applications of 7-Hydroxy-5,8-dimethoxyflavanone are primarily in research settings, where it is utilized to explore its potential therapeutic benefits. Scientists investigate its efficacy in cell culture and animal models to better understand its effects on human health. Research is ongoing to assess its potential applications in developing nutraceuticals or pharmaceuticals, particularly in areas concerning oxidative stress and inflammation-related disorders. The exploration of its pharmacokinetic properties, safety profile, and bioavailability remains an active area of scientific inquiry.</p>Formula:C17H16O5Purity:Min. 95%Molecular weight:300.3 g/molCarlinoside
CAS:<p>Carlinoside is a bioactive flavonoid glycoside, which is typically sourced from plants of the Astraceae family, specifically from the genus Carlina. As a natural phytochemical, its mode of action involves the modulation of various biochemical pathways, primarily through its antioxidant properties and potential to interact with cellular oxidative stress mechanisms.</p>Formula:C26H28O16Purity:Min. 95%Molecular weight:596.49 g/molSteppogenin
CAS:<p>Steppogenin is a metabolic modulator, which is derived from natural plant sources known for their enzymatic properties. Its mode of action involves the induction of cytochrome P450 enzymes, facilitating various oxidative reactions within biological systems. As an enzyme inducer, Steppogenin modulates metabolic pathways, making it invaluable for the study of drug metabolism and pharmacokinetics.</p>Formula:C15H12O6Purity:Min. 95%Molecular weight:288.25 g/molLimocitrin
CAS:<p>Limocitrin is a flavonoid compound, which is a naturally occurring plant secondary metabolite. Flavonoids are widely distributed in the plant kingdom and are known for their diverse biological activities. Limocitrin, specifically, has been isolated from various plant sources, including certain fruits and flowers. Its mode of action involves interacting with cellular signaling pathways, affecting processes such as oxidative stress response and gene expression regulation.</p>Purity:Min. 95%Glyasperin C - Glycyrrhiza uralensis (liquorice)
CAS:<p>Glyasperin C is a bioactive compound derived from Glycyrrhiza uralensis, commonly known as liquorice. This product is a phytochemical isolated from the roots of the liquorice plant, a member of the Fabaceae family. Glycyrrhiza uralensis has been traditionally utilized in various medicinal practices, primarily due to its diverse range of biologically active constituents.</p>Formula:C21H24O5Purity:Min. 95%Molecular weight:356.41 g/mol(S)-4',7-Dimethyl equol
CAS:<p>(S)-4',7-Dimethyl equol is an isoflavandiol, which is a metabolite of the soy isoflavone daidzein. It is produced in the human gut by bacterial metabolism, provided the individual has the appropriate intestinal microbiota capable of this transformation. The compound exhibits estrogenic activity, primarily due to its structural similarity to the endogenous hormone 17β-estradiol, allowing it to bind to estrogen receptors.</p>Formula:C17H18O3Purity:Min. 95%Molecular weight:270.32 g/mol3,7,4'-Trihydroxy-5-methoxy-8-prenylflavanone, (2R,3S)-
<p>3,7,4'-Trihydroxy-5-methoxy-8-prenylflavanone, (2R,3S)- is a naturally occurring prenylated flavanone, which is primarily sourced from various plant species. This compound is part of the larger flavonoid family and is often found in certain medicinal plants known for their wide range of therapeutic properties. Its structure comprises a flavanone backbone, modified by hydroxyl, methoxy, and prenyl groups that contribute to its distinctive chemical profile.</p>Purity:Min. 95%(E)-Deschlorophenyl fluoxastrobin
CAS:<p>(E)-Deschlorophenyl fluoxastrobin is a synthetic fungicide, which is derived from the strobilurin class of compounds, originally sourced from natural fungal metabolites. It functions by inhibiting mitochondrial respiration in fungal cells through disruption of the cytochrome bc1 complex, specifically at the Qo site. This mode of action effectively curtails the energy supply of the pathogen, leading to its death, and is integral in managing resistance issues known to occur with other fungicide groups.</p>Formula:C15H13FN4O5Purity:Min. 95%Molecular weight:348.29 g/mol6,2',4'-Trimethoxyflavone
CAS:<p>6,2',4'-Trimethoxyflavone is a flavonoid compound, which is a type of phytochemical found in various plant species. It is derived from natural sources, including certain medicinal herbs and plants known for their bioactive properties. This specific flavone is characterized by its three methoxy groups attached at distinct positions on the flavonoid backbone, which confer unique chemical properties and biological activities.</p>Formula:C18H16O5Purity:Min. 95%Molecular weight:312.32 g/molPanasenoside
CAS:<p>Please enquire for more information about Panasenoside including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C27H30O16Purity:Min. 95%Molecular weight:610.5 g/mol2-Hydroxynaringenin
CAS:<p>2-Hydroxynaringenin is a flavonoid compound, which is derived from the extraction and purification of various citrus fruits, particularly from the peel and pulp. It belongs to a class of secondary metabolites found predominantly in these plants, functioning as part of their natural defense mechanism.</p>Formula:C15H12O6Purity:Min. 95%Molecular weight:288.25 g/mol5,7,3'-Trihydroxy-6,4',5'-trimethoxyflavanone
CAS:<p>5,7,3'-Trihydroxy-6,4',5'-trimethoxyflavanone is a specialized flavanone derivative, which is a type of plant secondary metabolite found in various botanical sources. This compound originates primarily from citrus fruits and certain medicinal plants where it contributes to the plant’s defense mechanisms. As a flavonoid, its mode of action involves the modulation of enzyme activity, interaction with cell membranes, and potential antioxidant properties, allowing it to scavenge free radicals and reduce oxidative stress.</p>Formula:C18H18O8Purity:Min. 95%Molecular weight:362.3 g/molBilobetin
CAS:<p>Bilobetin is a flavonoid compound, which is sourced from the leaves of the Ginkgo biloba tree. This compound primarily functions through its antioxidative properties, influencing a variety of neural pathways. Its mode of action involves the scavenging of reactive oxygen species and modulation of cellular signaling pathways that impact synaptic transmission and neuroplasticity.</p>Purity:Min. 95%2,3-Dihydrohinokiflavone
CAS:<p>2,3-Dihydrohinokiflavone is a natural bioflavonoid compound, which is typically derived from various plant sources, particularly those native to East Asia. This compound belongs to the broader flavonoid family, known for their antioxidant properties. Its mode of action involves modulating various signaling pathways, which can lead to anti-inflammatory and antioxidant effects. It achieves this by inhibiting the production of pro-inflammatory cytokines and scavenging free radicals, thus reducing oxidative stress in biological systems.</p>Formula:C30H20O10Purity:Min. 95%Molecular weight:540.47 g/molKaempferol -3,7-di-O-glucoside
CAS:<p>Kaempferol-3,7-di-O-glucoside is a naturally occurring flavonoid, which is commonly derived from various plant sources, including fruits, vegetables, and medicinal herbs. As a flavonoid, it appears predominantly in the form of glycosides, where kaempferol is conjugated with sugar moieties, enhancing its solubility and bioavailability.</p>Formula:C27H30O16Purity:Min. 95%Molecular weight:610.52 g/mol(2R)-5,7-Dimethoxyflavanone
CAS:<p>(2R)-5,7-Dimethoxyflavanone is a natural flavonoid, which is a type of polyphenolic compound. It is derived from various plant sources, commonly found in fruits, vegetables, and certain medicinal herbs. Its structure includes a flavanone backbone with methoxy groups at specific positions, which modulate its biological activity.</p>Formula:C17H16O4Purity:Min. 95%Molecular weight:284.31 g/mol6-Methoxykaempferol 3-O-rutinoside
CAS:<p>6-Methoxykaempferol 3-O-rutinoside is a flavonoid glucoside, which is derived from various plants, particularly those belonging to the Leguminosae family. This compound is of significant interest due to its potential biological activities and natural occurrence. The mode of action of 6-Methoxykaempferol 3-O-rutinoside primarily involves its antioxidant properties, which may help in neutralizing free radicals and reducing oxidative stress in biological systems.</p>Purity:Min. 95%Protogenkwanin 4'-glucoside
CAS:<p>Protogenkwanin 4'-glucoside is a flavonoid glucoside, which is a naturally occurring compound derived from various plant sources, particularly known to be present in certain medicinal herbs used in traditional medicine. As a flavonoid glucoside, it interacts with biological systems primarily through its antioxidant properties, which help in scavenging free radicals and reducing oxidative stress. This mode of action is crucial in mitigating cell damage and inflammation.</p>Formula:C22H24O11Purity:Min. 95%Molecular weight:464.42 g/molHomoferreirin
CAS:<p>Homoferreirin is a biochemical siderophore, which is a low-molecular-weight iron-chelating compound derived from plant sources. Its mechanism of action involves binding ferric iron (Fe^3+) ions with high affinity, forming a stable complex. This complex aids in the solubilization and transport of iron across cellular membranes, which is crucial in environments where iron availability is limited, such as in soil and certain biological niches.</p>Formula:C17H16O6Purity:Min. 95%Molecular weight:316.31 g/mol2',7-Dihydroxy-5,8-dimethoxyflavanone
CAS:<p>2',7-Dihydroxy-5,8-dimethoxyflavanone is a natural flavanone, which is a type of polyphenolic compound. It is derived from various plant sources where flavonoids are commonly found, such as fruits, vegetables, and certain herbs. This particular flavanone exhibits a unique chemical structure characterized by dihydroxy and dimethoxy functional groups, which contribute to its biological activity.</p>Formula:C17H16O6Purity:Min. 95%Molecular weight:316.30 g/mol3,5,7,2',6'-Pentahydroxyflavanone
CAS:<p>3,5,7,2',6'-Pentahydroxyflavanone is a flavonoid derivative, which is a type of polyphenolic compound known for its potential health benefits. Typically sourced from various plants, flavonoids like 3,5,7,2',6'-Pentahydroxyflavanone are abundant in fruits, vegetables, and certain medicinal herbs. The mode of action of this compound primarily involves its ability to exert antioxidant and anti-inflammatory effects. It achieves this by scavenging free radicals and modulating pathways associated with oxidative stress and inflammation.</p>Formula:C15H12O7Purity:Min. 95%Molecular weight:304.25 g/molGenistein 7,4'-di-O-glucoside
CAS:<p>Genistein 7,4'-di-O-glucoside is a naturally occurring isoflavone glucoside, which is derived from plant sources such as soybeans and other legumes. As an isoflavone, it belongs to a class of phytoestrogens, compounds that are structurally similar to estrogens but are derived from plants. The mode of action of Genistein 7,4'-di-O-glucoside primarily involves its ability to interact with estrogen receptors in the body, exhibiting both estrogenic and anti-estrogenic effects depending on the physiological context. This interaction can modulate various signaling pathways, potentially impacting cellular growth, apoptosis, and differentiation.</p>Formula:C27H30O15Purity:Min. 95%Molecular weight:594.52 g/molLeucoside
CAS:<p>Leucoside is a biochemical compound, which is derived from activated human leucocytes. This product is obtained through a meticulous extraction process that isolates specific bioactive molecules. Its mode of action involves the modulation of immune responses, potentially by influencing cytokine signaling pathways. Leucoside interacts with immune cells, potentially enhancing or dampening specific activities to achieve desired immunomodulatory effects.</p>Purity:Min. 95%Licoflavonol
CAS:<p>Licoflavonol is a bioactive compound that serves as an antioxidant, which is derived from plant sources, particularly flavonoid-rich species. Its mode of action involves scavenging free radicals and modulating pathways involved in oxidative stress and inflammation. By reducing oxidative damage, Licoflavonol can stabilize cellular environments and protect macromolecules such as DNA, proteins, and lipids from degenerative changes.</p>Formula:C20H18O6Purity:Min. 95%Molecular weight:354.35 g/molSophoraflavanone C
CAS:<p>Sophoraflavanone C is a flavonoid compound, which is derived from the root of the Sophora flavescens plant. This natural product is categorized as a prenylated flavonoid, a group known for diverse biological activities. Sophoraflavanone C exerts its effects through multiple modes of action, including the inhibition of microbial growth and anti-inflammatory pathways. Its antimicrobial properties are attributed to the disruption of bacterial cell walls and inhibition of critical microbial enzymes. Additionally, its anti-inflammatory effects are mediated by the suppression of pro-inflammatory cytokines and inhibition of key signaling pathways such as NF-kB.</p>Formula:C25H28O6Purity:Min. 95%Molecular weight:424.50 g/mol7,4'-Dibenzyl daidzein
CAS:<p>7,4'-Dibenzyl daidzein is a synthetic isoflavonoid, derived from the modification of natural isoflavones commonly found in soy products. These isoflavones are known for their estrogenic activity and potential therapeutic benefits. The source of inspiration for this compound lies in natural phytoestrogens, which exhibit significant interaction with human estrogen receptors. This synthetic analog is designed to enhance specific bioactivities beyond those of its natural counterparts.</p>Formula:C29H22O4Purity:Min. 95%Molecular weight:434.48 g/molMilldurone
CAS:<p>Please enquire for more information about Milldurone including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C19H16O7Purity:Min. 95%Color and Shape:PowderMolecular weight:356.33 g/mol2'-Methoxyflavone
CAS:<p>Enhances TRAIL-induced apoptosis in MOLT-4- cells</p>Formula:C16H12O3Purity:Min. 95%Color and Shape:White PowderMolecular weight:252.26 g/molR,S equol 4'-sulfate sodium salt
CAS:<p>R,S equol 4'-sulfate sodium salt is a synthetic derivative of equol, which is a type of flavonoid metabolite. This compound is primarily sourced from the biotransformation of the isoflavone daidzein through gut microbiota activity. As a sulfate salt, it is more soluble in aqueous environments, which may facilitate its use in various biological contexts.</p>Formula:C15H13NaO6SPurity:Min. 95%Molecular weight:344.32 g/mol7,4'-Dihydroxyhomoisoflavanone
CAS:Controlled Product<p>7,4'-Dihydroxyhomoisoflavanone is a naturally occurring compound, classified as a homoisoflavanone, which is a type of polyphenolic compound. It is primarily sourced from plants, specifically found in certain species of the Fabaceae family. The compound is characterized by its unique structural configuration, which contributes to its bioactivity.</p>Formula:C16H14O4Purity:Min. 95%Molecular weight:270.28 g/mol6-Methoxy-3,5,7,4'-tetrahydroxyflavone
CAS:<p>6-Methoxy-3,5,7,4'-tetrahydroxyflavone is a natural flavonoid derivative, which is primarily sourced from various plants known for their high polyphenolic content. It plays a significant role in the plant's defense mechanism due to its ability to scavenge free radicals and protect against oxidative stress. This compound exerts its mode of action through its potent antioxidant and anti-inflammatory capabilities, primarily by modulating signaling pathways and inhibiting the activity of enzymes involved in inflammation.</p>Formula:C16H12O7Purity:Min. 95%Molecular weight:316.26 g/molMaackiaflavanone
CAS:<p>Maackiaflavanone is a specialized flavanone, which is a type of natural compound. It is derived from the Maackia plant species, particularly found in temperate regions and known for its rich phytochemical profile. The flavanone exhibits its activity primarily through its interaction with cellular pathways associated with oxidative stress and inflammation, modulating various biochemical signals that can influence cell behavior.</p>Formula:C26H30O6Purity:Min. 95%Molecular weight:438.50 g/molLupinalbin B
CAS:<p>Lupinalbin B is a bioactive compound, specifically classified as an alkaloid, which is derived from the seeds of the Lupinus plant species. These plants, commonly known as lupins, are a part of the legume family and are cultivated primarily for their seeds that contain high protein content. The presence of alkaloids like Lupinalbin B in lupin seeds is a result of the plant's secondary metabolism, which serves various ecological functions, including defense against herbivores.</p>Formula:C20H16O6Purity:(%) Min. 95%Color and Shape:PowderMolecular weight:352.34 g/mol5,6,7,2'-Tetrahydroxyflavone
CAS:<p>5,6,7,2'-Tetrahydroxyflavone is a naturally occurring flavonoid, which is commonly found in various plants. As a bioactive compound, it is typically derived from the leaves, stems, or fruits of these plants, where it plays a crucial role in plant defense. The mode of action of 5,6,7,2'-Tetrahydroxyflavone is primarily through its potent antioxidant activity. It scavenges free radicals and reduces oxidative stress, thereby contributing to cellular protection and stability.</p>Formula:C15H10O6Purity:Min. 95%Molecular weight:286.24 g/molOsajin
CAS:<p>Osajin is a natural flavonoid compound, which is derived from the fruit of Maclura pomifera, also known as the Osage orange. This compound is characterized by its distinctive isoflavone structure, which is central to its biological activity. The mode of action of Osajin involves modulation of various biochemical pathways, predominantly exhibiting antioxidant properties. It acts by scavenging free radicals and enhancing cellular defense mechanisms against oxidative stress, thereby contributing to its potential therapeutic efficacy.</p>Formula:C25H24O5Purity:Min. 95%Color and Shape:PowderMolecular weight:404.46 g/mol5-Hydroxy-7,8-dimethoxyflavone
CAS:<p>5-Hydroxy-7,8-dimethoxyflavone is a naturally occurring flavonoid compound, which is typically isolated from plant sources, most notably citrus fruits. The compound functions primarily as a modulator of various biological pathways through its interaction with enzyme systems and receptor sites. This includes the modulation of signaling pathways involved in inflammation, oxidative stress, and cellular apoptosis.</p>Formula:C17H14O5Purity:Min. 95%Molecular weight:298.29 g/molEuchrestaflavanone A
CAS:<p>Euchrestaflavanone A is a naturally occurring flavanone, which is a type of polyphenolic compound. It is sourced from plants, specifically derived from the roots of Euchresta formosana, a species used traditionally in herbal medicine. The mode of action of Euchrestaflavanone A involves its interaction with various molecular pathways, influencing antioxidant activity and modulating enzyme function. It exhibits bioactive properties, including anti-inflammatory, antioxidant, and potential anticancer effects.</p>Formula:C25H28O5Purity:Min. 95%Molecular weight:408.50 g/molEuropetin
CAS:<p>Europetin is a flavonoid, a type of naturally occurring compound, which is derived from various plant sources. The compound functions as an anti-inflammatory agent by modulating signaling pathways involved in inflammatory responses, such as the NF-kB pathway. Its efficacy in reducing inflammatory mediators makes it a subject of interest for exploring therapeutic interventions.</p>Formula:C16H12O8Purity:Min. 95%Molecular weight:332.26 g/molBiochanin A-7-O-glucoside
CAS:<p>Biochanin A-7-O-glucoside is a naturally occurring isoflavone glucoside, which is derived from various plants, particularly red clover and soy. It is a secondary metabolite, commonly found in legumes and other related species. The mode of action of Biochanin A-7-O-glucoside involves its structural ability to act as an antioxidant, scavenging free radicals and mitigating oxidative stress. This biochemical property allows it to influence various molecular pathways related to cell signaling and gene expression.</p>Formula:C22H22O10Purity:Min. 95%Color and Shape:SolidMolecular weight:446.4 g/molPlantanone B
CAS:<p>Plantanone B is a naturally-derived compound, which is an anti-inflammatory agent sourced from the Plantago species. It is known for its distinct bioactive properties attributed to its unique phytochemical structure. The compound primarily functions by modulating inflammatory pathways, specifically targeting the downregulation of pro-inflammatory cytokines and inhibiting the production of reactive oxygen species. This mode of action underscores its potential in addressing inflammation-associated cellular processes.</p>Formula:C33H40O20Purity:Min. 95%Molecular weight:756.66 g/molPodospicatin
CAS:<p>Podospicatin is a type of natural compound, which is derived from fungal sources. This unique compound is isolated from specific fungal species known for their ability to produce bioactive secondary metabolites. Podospicatin is characterized by its distinctive molecular structure, which contributes to its potential bioactivity.</p>Formula:C17H14O7Purity:Min. 95%Color and Shape:PowderMolecular weight:330.29 g/molDatiscin
CAS:<p>Datiscin is a flavonoid glycoside, which is a type of naturally occurring compound found in plants. It is derived from various botanical sources, notably within the Datisca genus. These compounds are characterized by a flavonoid core structure bonded to sugar moieties. The mode of action of Datiscin primarily involves its interaction with free radicals and reactive oxygen species, suggesting potential antioxidative properties. This mechanism can help mitigate oxidative stress within biological systems.</p>Formula:C27H30O15Purity:Min. 95%Molecular weight:594.52 g/mol5-Hydroxy-7,8-dimethoxy (2R)-flavanone-5-o-β-D-glucopyranoside
CAS:<p>5-Hydroxy-7,8-dimethoxy (2R)-flavanone-5-o-beta-D-glucopyranoside is a flavanone glycoside, which is a type of naturally occurring polyphenolic compound. This compound is typically derived from various plant sources, particularly those used in traditional medicine.</p>Formula:C23H26O10Purity:Min. 95%Molecular weight:462.40 g/molPinobanksin acetate
CAS:<p>Pinobanksin acetate is a flavonoid compound, which is naturally sourced from bee propolis. Propolis, a resinous substance collected by bees from tree buds, is renowned for its complex chemical composition integrated from various botanical sources. Pinobanksin acetate is one of the active polyphenolic constituents identified within propolis, exhibiting intriguing bioactive properties.</p>Formula:C17H14O6Purity:Min. 95%Molecular weight:314.29 g/molAromadendrin 7-O-methyl ether
CAS:<p>Aromadendrin 7-O-methyl ether is a flavonoid compound, which is a type of bioactive molecule. It is sourced primarily from plant materials, where it occurs naturally as a secondary metabolite. The mode of action of Aromadendrin 7-O-methyl ether involves interaction with various biological pathways, potentially affecting enzyme activity and cell signaling mechanisms. Such interactions may contribute to its reported antioxidant and anti-inflammatory properties.</p>Formula:C16H14O6Purity:Min. 95%Color and Shape:PowderMolecular weight:302.28 g/mol5,7,3'-Trihydroxy-6,4',5'-trimethoxyflavone
CAS:<p>5,7,3'-Trihydroxy-6,4',5'-trimethoxyflavone is a methoxylated flavonoid, which is a type of polyphenolic compound. This compound is typically sourced from certain plant species known for their high antioxidant content. Flavonoids are widely studied for their diverse biological activities and are often isolated from traditional medicinal plants.</p>Purity:Min. 95%Petanin
CAS:<p>Petanin is a natural compound isolated from the fruit of Lycium barbarum. It has been shown to have anti-inflammatory and antioxidant properties, as well as protective effects against UV radiation. Petanin is used in dietary supplements and works in synergy with other nutrients to help protect cells and repair skin damage.</p>Purity:Min. 95%7-Hydroxy-5-methoxyflavanone
CAS:<p>7-Hydroxy-5-methoxyflavanone is a naturally occurring flavanone compound, which is derived from various plant sources. These sources often include fruits, vegetables, and certain medicinal herbs, known for their rich flavonoid content. The mode of action of 7-Hydroxy-5-methoxyflavanone primarily involves its role as an antioxidant. It helps in scavenging free radicals and reducing oxidative stress, which is a common pathway in cellular protection against damage.</p>Formula:C16H14O4Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:270.28 g/mol2,3-Dehydrokievitone
CAS:<p>2,3-Dehydrokievitone is a phytoalexin, which is a naturally occurring antimicrobial compound. It is derived from leguminous plants, such as those in the Fabaceae family. Phytoalexins are synthesized de novo by plants in response to pathogen attack, and 2,3-Dehydrokievitone plays a role in the plant’s defense mechanisms.</p>Formula:C20H18O6Purity:Min. 95%Molecular weight:354.35 g/mol5,7-Dihydroxy-3',4',5'-trimethoxyflavanone
CAS:<p>5,7-Dihydroxy-3',4',5'-trimethoxyflavanone is a flavanone compound, which is a type of polyphenolic compound found predominantly in the plant kingdom. This compound can be sourced from various plants, where it often occurs as part of the natural defense mechanisms to protect the organism from environmental stressors.</p>Formula:C18H18O7Purity:Min. 95%Molecular weight:346.33 g/mol6,7,2',3',4'-Pentamethoxyisoflavone
CAS:<p>6,7,2',3',4'-Pentamethoxyisoflavone is a naturally occurring flavonoid compound, which is derived from certain plant sources known for their rich polyphenolic content. As part of the isoflavone family, this compound is structurally similar to estrogen, allowing it to potentially interact with estrogen receptors in the body. Its mode of action includes modulating various biochemical pathways, including antioxidant and anti-inflammatory pathways, due to its ability to influence enzyme activities and cell signaling processes.</p>Formula:C20H20O7Purity:Min. 95%Color and Shape:PowderMolecular weight:372.37 g/molRhusflavanone
CAS:<p>Rhusflavanone is a flavanone compound, which is a type of polyphenolic molecule found in certain medicinal plants. It is derived primarily from the Rhus genus, known for its rich content of bioactive compounds. The mode of action of Rhusflavanone involves the modulation of inflammatory pathways, as it exhibits inhibition of pro-inflammatory enzymes such as cyclooxygenase (COX) and lipoxygenase (LOX). Additionally, it shows potential in scavenging free radicals, contributing to its antioxidant capabilities.</p>Formula:C30H22O10Purity:Min. 95%Molecular weight:542.5 g/molSideritoflavone
CAS:<p>Sideritoflavone is a flavonoid compound, which is a type of secondary metabolite derived from the *Sideritis* plant species. These plants, commonly found in the Mediterranean region, are traditionally used in herbal remedies. The compound is known for its potential biological and pharmacological activities, which stem from its interaction with various biochemical pathways.</p>Formula:C18H16O8Purity:Min. 95%Molecular weight:360.31 g/mol3',4',7-Trihydroxyflavanone
CAS:<p>3',4',7-Trihydroxyflavanone is a natural flavonoid compound, which is predominantly found in various plant sources, such as flowers, fruits, and leaves. This compound is known for its significant antioxidative properties, attributed to its polyphenolic structure. The mechanism of action involves the scavenging of free radicals, thereby reducing oxidative stress within biological systems. Additionally, its molecular configuration allows it to interact with various cellular pathways that modulate inflammation and cellular signaling.</p>Formula:C15H12O5Purity:Min. 95%Molecular weight:272.25 g/molBavachin
CAS:<p>Phytoestrogen; estrogen receptor agonist; PPARγ ligand</p>Formula:C20H20O4Purity:Min. 95%Color and Shape:SolidMolecular weight:324.37 g/mol(-)-Epiafzelechin
CAS:<p>(-)-Epiafzelechin is a flavan-3-ol compound, which is a type of flavonoid. It is derived primarily from plant sources, including various tea leaves and cocoa. The compound is known for its potent antioxidant properties, which act by neutralizing free radicals and thereby reducing oxidative stress within biological systems. This action helps in maintaining cellular integrity and function, which is crucial in preventing various oxidative damage-related diseases.</p>Formula:C15H14O5Purity:Min. 95%Color and Shape:PowderMolecular weight:274.27 g/mol3'-Hydroxyflavanone
CAS:<p>3'-Hydroxyflavanone is a naturally occurring flavanone, which is a type of polyphenolic compound found in various plants and fruits. Known for its presence in citrus fruits and certain herbal sources, 3'-Hydroxyflavanone is characterized by its unique structural configuration, featuring a hydroxyl group that is crucial for its bioactivity.</p>Formula:C15H12O3Purity:Min. 95%Molecular weight:240.26 g/molRetusin tlc
CAS:<p>Retusin TLC is a flavonoid compound, which is derived from natural plant sources. Flavonoids are known for their diverse biological activities, primarily due to their antioxidant properties. The mode of action of Retusin TLC involves its ability to scavenge free radicals, thereby reducing oxidative stress at the cellular level. This activity plays a crucial role in modulating various biochemical pathways, potentially leading to anti-inflammatory and anti-cancer effects.</p>Formula:C16H12O5Purity:Min. 95%Molecular weight:284.26 g/molDaidzein diacetate
CAS:<p>Daidzein diacetate is a synthetic derivative of the isoflavone daidzein, which is a bioactive compound found primarily in soybeans and other legumes. The acetylation process enhances the compound's stability and solubility, potentially improving its bioavailability compared to its parent compound. Daidzein itself is naturally occurring and has been studied for its various health-promoting properties, including estrogenic and antioxidant activities.</p>Formula:C19H14O6Purity:Min. 95%Molecular weight:338.31 g/molCuneatin-7-methyl ether
CAS:<p>Cuneatin-7-methyl ether is a naturally occurring compound, classified as a flavonoid derivative. It is primarily sourced from certain plant species known for producing bioactive flavonoids. These plants are typically found in specific geographical regions, and the compound can be extracted through meticulous phytochemical methods.</p>Formula:C18H14O6Purity:Min. 95%Color and Shape:PowderMolecular weight:326.3 g/molFlavanone-d5
CAS:<p>Flavanone-d5 is an isotopically labeled flavonoid, which is a type of phenolic compound found in various plants. This compound is sourced from natural flavonoids that have been enriched with deuterium, an isotope of hydrogen, typically at five specific positions within the molecular structure. The mode of action involves the examination of metabolic pathways and interactions due to its stable isotopic labeling, allowing for precise tracing in biochemical assays.</p>Formula:C15H12O2Purity:Min. 95%Molecular weight:229.28 g/mol8-Prenylpinocembrin
CAS:<p>8-Prenylpinocembrin is a specialized flavonoid compound, which is a part of the prenylflavonoid class. It is derived from natural sources, primarily plants within the Fabaceae family and propolis from honeybees. The compound is characterized by its prenyl group attached to the flavonoid pinocembrin, enhancing its biological activity through increased lipophilicity and membrane permeability.</p>Formula:C20H20O4Purity:Min. 95%Molecular weight:324.37 g/mol6,3'-Diprenylgenistein
CAS:<p>6,3'-Diprenylgenistein is a prenylated isoflavonoid compound, which is derived from certain plants, notably those within the legume family. This phytochemical is characterized as an isoflavone, a class of naturally occurring organic compounds related to flavonoids, distinguished by the inclusion of prenyl groups that potentially enhance its biological activity and bioavailability.</p>Formula:C25H26O5Purity:Min. 95%Molecular weight:406.47 g/molAlpinumisoflavone-4'-methyl ether
CAS:<p>Alpinumisoflavone-4'-methyl ether is a methoxyisoflavone, which is a type of naturally occurring phenolic compound. It is derived from specific plant sources, including certain species within the Fabaceae family, known for their rich isoflavonoid content. These compounds are synthesized in plants as part of their defense mechanisms against environmental stresses and pathogens.</p>Formula:C21H18O5Purity:Min. 95%Color and Shape:PowderMolecular weight:350.36 g/molTricetin 7-O-glucoside
CAS:<p>Tricetin 7-O-glucoside is a flavonoid glycoside compound, which is a derivative of the naturally occurring flavonoid tricetin. This compound is sourced primarily from certain plant species, including various herbs and foods, where it is present as a minor constituent. The mode of action of Tricetin 7-O-glucoside involves its ability to scavenge free radicals and modulate inflammatory pathways, showcasing both antioxidant and anti-inflammatory properties.</p>Formula:C21H20O12Purity:Min. 95%Molecular weight:464.38 g/molGossypetin-8-glucuronide
CAS:<p>Gossypetin-8-glucuronide is a flavonoid glucuronide, which is a type of plant secondary metabolite. It is derived from flowering plants, particularly those within the Hibiscus genus, where it serves as a glycosylated form of the flavonoid gossypetin. The glucuronidation process enhances the solubility and potential bioavailability of the compound. The mode of action of Gossypetin-8-glucuronide involves its role as a potent antioxidant, neutralizing free radicals and reducing oxidative stress at the cellular level. This activity is crucial in preventing damage to cellular structures such as lipids, proteins, and nucleic acids.</p>Formula:C21H18O14Purity:Min. 95%Molecular weight:494.36 g/molIsomedicarpin
CAS:<p>Isomedicarpin is a flavonoid compound, which is naturally derived from plant sources. It is isolated predominantly from certain species within the Leguminosae family, where these compounds often play a role in the plant's defense mechanisms. The mode of action of isomedicarpin involves disrupting microbial cell membranes and interfering with essential biochemical pathways, which contributes to its antimicrobial efficacy.</p>Formula:C16H14O4Purity:Min. 95%Molecular weight:270.28 g/mol6,7,4'-Trihydroxyflavanone
CAS:<p>6,7,4'-Trihydroxyflavanone is a naturally occurring flavonoid, which is found in various plant sources, particularly in citrus fruits and certain medicinal herbs. This compound is characterized by its presence of hydroxyl groups, enhancing its reactivity and interaction with biological systems. The mode of action of 6,7,4'-Trihydroxyflavanone primarily involves its antioxidant activity. It can scavenge free radicals and chelate metal ions, thereby reducing oxidative stress within cellular environments. This property is critical in maintaining cellular integrity and preventing damage caused by reactive oxygen species.</p>Formula:C15H12O5Purity:Min. 95%Molecular weight:272.25 g/molHydroxygenkwanin
CAS:<p>Hydroxygenkwanin is a type of flavonoid, which is a natural compound extracted from various plant sources, particularly those within the Asteraceae family. It functions predominantly through its ability to modulate multiple signaling pathways, including antioxidant, anti-inflammatory, and apoptosis-inducing activities. Hydroxygenkwanin acts by influencing cellular signaling cascades, enhancing or inhibiting the expression of specific proteins and genes related to cell cycle regulation and immune response.</p>Formula:C16H12O6Purity:Min. 95%Molecular weight:300.26 g/mol7,4'-Dihydroxyflavanone
CAS:<p>7,4'-Dihydroxyflavanone is a naturally occurring flavonoid, which is primarily sourced from various plant species. This compound is a type of polyphenolic molecule that often manifests in fruits, vegetables, and certain herbs. Its biosynthesis in plants is part of their secondary metabolism, where it plays roles in plant defense against pathogens and UV radiation.</p>Formula:C15H12O4Purity:Min. 95%Molecular weight:256.25 g/mol5-Methoxyflavanone
CAS:<p>5-Methoxyflavanone is an organic compound, which is a flavonoid derivative obtained primarily through synthetic procedures involving the modification of flavanones. This compound is synthesized through specific chemical reactions that introduce a methoxy group into the flavanone structure, thereby altering its chemical and biological properties.</p>Formula:C16H14O3Purity:Min. 95%Molecular weight:254.28 g/molPratensein 7-O-glucoside
CAS:<p>Pratensein 7-O-glucoside is a naturally occurring flavonoid glucoside, which is extracted from various plant sources such as red clover, Trifolium pratense. This compound is formed when the flavonoid pratensein is glycosylated at the 7th position with glucose. As a member of the isoflavone group, Pratensein 7-O-glucoside may exert its effects primarily through antioxidant mechanisms, neutralizing reactive oxygen species and reducing oxidative stress.</p>Formula:C22H22O11Purity:Min. 95%Molecular weight:462.4 g/mol2'-Methoxybiochanin A
CAS:<p>2'-Methoxybiochanin A is a naturally occurring isoflavone, which is predominantly derived from the plant Trifolium pratense, commonly known as red clover. This compound is characterized by its unique chemical structure that includes a methoxy group, which differentiates it from other isoflavones. The mode of action of 2'-Methoxybiochanin A involves its interaction with estrogen receptors, as well as its ability to modulate various biological pathways linked to inflammation and oxidative stress.</p>Formula:C17H14O6Purity:Min. 95%Color and Shape:PowderMolecular weight:314.29 g/molIcarisid I
CAS:<p>Icarisid I is a sophisticated protease inhibitor, which is derived from a natural source. This compound exhibits a high affinity for specific proteases, making it an invaluable tool in research and biotechnological applications. The compound's mode of action involves the selective and competitive inhibition of protease enzymes, effectively blocking their activity within biological systems. This can be particularly useful in studies aiming to elucidate the role of proteases in various biochemical pathways and disease processes.</p>Purity:Min. 95%Kazinol B
CAS:<p>Kazinol B is an isoprenylated flavonoid, which is a secondary metabolite derived from plants, predominantly found in members of the Moraceae family. It is synthesized through the plant's natural biochemical pathways, involving the modification of basic flavonoid structures via prenylation, resulting in increased lipophilicity and potential bioactivity.</p>Formula:C25H28O4Purity:Min. 95%Molecular weight:392.49 g/molNeoastilbin
CAS:<p>Neoastilbin is a natural flavonoid compound, which is derived from the plant species *Smilax glabra*. It acts by modulating immune responses and inhibiting specific enzymatic pathways associated with inflammation, making it an effective agent in reducing inflammatory processes.</p>Formula:C21H22O11Purity:Min. 95%Color and Shape:PowderMolecular weight:450.39 g/molIsomucronulatol 7-O-glucoside
CAS:<p>Isomucronulatol 7-O-glucoside is a flavonoid glucoside compound, which is isolated predominantly from various plant species. This compound is known for its comprehensive role as a secondary metabolite that participates in the plant's defense mechanism. The primary mode of action involves its ability to interact with biological targets at the molecular level, potentially exhibiting antioxidant, anti-inflammatory, or other bioactive properties. Isomucronulatol 7-O-glucoside may influence signaling pathways, which can alter physiological responses within organisms.</p>Purity:Min. 95%7,4'-Dihydroxy-6,8-diprenylflavanone
CAS:<p>7,4'-Dihydroxy-6,8-diprenylflavanone is a prenylated flavonoid, which is a type of naturally occurring compound found in various plants. This compound is often derived from specific plant species known for their rich flavonoid content. The prenylation of flavonoids, such as 7,4'-Dihydroxy-6,8-diprenylflavanone, often enhances their biological activity.</p>Formula:C25H28O4Purity:Min. 95%Molecular weight:392.5 g/molPicoxystrobin
CAS:<p>Picoxystrobin is a synthetic fungicide, belonging to the strobilurin chemical class, which is derived from naturally occurring compounds found in certain fungi. It functions by inhibiting mitochondrial respiration in fungal cells, specifically targeting the cytochrome bc1 complex in the electron transport chain. This mode of action disrupts energy production, effectively halting the growth and reproductive capabilities of pathogenic fungi.</p>Formula:C18H16F3NO4Purity:Min. 98 Area-%Molecular weight:367.32 g/molRef: 3D-J-003622
1kgTo inquire50gTo inquire100gTo inquire250gTo inquire500gTo inquire-Unit-ggTo inquireLicoflavone C
CAS:<p>Licoflavone C is a bioactive flavonoid compound, which is derived from the roots of Glycyrrhiza species. This particular flavonoid is notable for its complex chemical structure that contributes to its biological activity. The primary mode of action of Licoflavone C involves modulation of various cellular pathways, including antioxidant and anti-inflammatory mechanisms. It also influences cell cycle regulation and apoptosis, which are critical in cancer research. The compound's ability to act as a natural antioxidant makes it a valuable candidate in the formulation of skincare products aimed at protecting against oxidative stress. In scientific studies, Licoflavone C has been investigated for its potential anticancer properties, particularly focusing on its effects in inhibiting the proliferation of cancer cells. Furthermore, its role in skin health is under exploration, where its antioxidant capacity and potential to stimulate collagen production may offer benefits in anti-aging products. Such applications make Licoflavone C an intriguing subject for research in natural product chemistry and therapeutic development.</p>Formula:C20H18O5Purity:Min. 95%Molecular weight:338.35 g/molScutellarin methylester
CAS:<p>Scutellarin methylester is a flavonoid derivative, which is a modified form of the naturally occurring compound scutellarin. It originates from plant sources, notably from species within the *Scutellaria* genus. The modification to a methyl ester potentially increases its bioavailability and modifies its pharmacokinetic properties.</p>Purity:Min. 95%Iso-Osajin
CAS:<p>Iso-Osajin is a naturally occurring compound that falls under the category of prenylated flavonoids. It is isolated from the seeds of Psoralea corylifolia, a plant traditionally used in various medicinal systems. The compound exhibits its mode of action primarily through antimicrobial activities, potentially disrupting microbial cell membranes or inhibiting essential enzymes. Iso-Osajin has been of considerable interest due to its promising pharmacological effects, including antibacterial, antifungal, and possibly antiviral properties.</p>Formula:C25H24O5Purity:Min. 95%Color and Shape:PowderMolecular weight:404.46 g/mol7-Benzyloxy-3',4'-dimethoxyisoflavone
CAS:<p>7-Benzyloxy-3',4'-dimethoxyisoflavone is a synthetic isoflavone derivative, which is a specialized compound designed for research and potential pharmacological applications. Isoflavones are naturally occurring compounds found predominantly in plants like soybeans and are studied for their biological activities. This particular compound is synthetically modified with methoxy groups, enhancing its stability and bioavailability.</p>Formula:C24H20O5Purity:Min. 95%Molecular weight:388.41 g/mol5,7,2',4'-Tetrahydroxy-8,3'-di(γ,γ-dimethylallyl)-isoflavanone
CAS:<p>5,7,2',4'-Tetrahydroxy-8,3'-di(gamma,gamma-dimethylallyl)-isoflavanone is a prenylated isoflavanone, which is a type of flavonoid compound extensively studied in natural product chemistry. It is primarily sourced from specific plant species known for their rich secondary metabolite profiles, often within the Fabaceae family. The mode of action of this compound involves its interaction at the molecular level with various biological targets, potentially leading to antioxidant, anti-inflammatory, or antimicrobial effects. These actions are mediated through the compound’s ability to modulate enzyme activities, interact with cellular membranes, and influence signaling pathways.</p>Formula:C25H28O6Purity:Min. 95%Molecular weight:424.50 g/molErythrinin A
CAS:<p>Erythrinin A is an alkaloid compound, which is an isolated bioactive substance derived from the Erythrina plant species. This compound is primarily sourced from the beans and bark of Erythrina plants, which are native to tropical and subtropical regions. Erythrinin A exhibits its mode of action by interacting with neurotransmitter systems within the central nervous system, possessing properties that may influence receptors such as GABA and others related to neuromodulation.</p>Formula:C20H16O4Purity:Min. 95%Molecular weight:320.34 g/molCirsimarin
CAS:<p>Cirsimarin is a natural flavonoid compound, which is extracted from certain plant species, primarily in the Asteraceae family. It functions by modulating various biochemical pathways through its potent anti-inflammatory, antioxidant, and hepatoprotective activities. Cirsimarin exerts its effects by scavenging free radicals, inhibiting inflammatory mediators, and supporting liver function through upregulation of detoxifying enzymes.</p>Formula:C23H24O11Purity:Min. 95%Color and Shape:PowderMolecular weight:476.43 g/molWighteone
CAS:<p>Please enquire for more information about Wighteone including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C20H18O5Purity:Min. 95%Molecular weight:338.35 g/molGrosvenorine
CAS:<p>Grosvenorine is a biochemical compound, which is a natural glycoside extracted from the fruit of Siraitia grosvenorii, commonly known as monk fruit. This compound is primarily sourced from the cucurbitaceae family of plants, renowned for their sweet-tasting fruits. The mode of action of grosvenorine involves its interaction with various metabolic pathways, exhibiting antioxidant and anti-inflammatory properties.</p>Purity:Min. 95%6-Chloroflavone
CAS:<p>6-Chloroflavone is a synthetic flavonoid derivative, which is a modified chemical compound originating from naturally occurring flavonoids found in various plants. Structurally, it is characterized by the substitution of a chlorine atom at the 6th position on the flavone backbone. This chemical modification is designed to alter its physicochemical properties and enhance its biological activity.</p>Formula:C15H9ClO2Purity:Min. 95%Molecular weight:256.68 g/molGardenin B
CAS:<p>Gardenin B is a microbial biocontrol agent that originates from Streptomyces bacteria. It functions as a secondary metabolite deriving from its microbial source. The mode of action involves inhibiting the growth of plant-pathogenic fungi by disrupting their cellular processes and interfering with spore germination or hyphal proliferation. Gardenin B is primarily utilized in agricultural settings to control fungal diseases in crops, reducing reliance on synthetic chemical fungicides. Its application is integrated into plant protection programs to enhance agricultural sustainability and improve crop yields while minimizing the environmental impact. Scientists are investigating its mechanisms and potential for broader applications.</p>Formula:C19H18O7Purity:Min. 95%Molecular weight:358.34 g/mol5,7,4’-Trihydroxy-8-methylflavanone
CAS:<p>5,7,4’-Trihydroxy-8-methylflavanone is a flavanone, which is a type of flavonoid compound. Flavonoids are secondary metabolites commonly found in plants and are responsible for a variety of biological activities. This particular compound can be sourced from various plant species known for their rich content of natural phenolic substances.</p>Formula:C16H14O5Purity:Min. 95%Molecular weight:286.28 g/molIsoetin
CAS:<p>Rare natural product belonging to the flavone sub-group of flavonoids</p>Formula:C15H10O7Purity:Min. 95%Molecular weight:302.24 g/molDihydrokaempferol-3-glucoside
CAS:<p>Dihydrokaempferol-3-glucoside is a flavonoid glucoside, which is primarily derived from various plant sources including fruits, vegetables, and certain medicinal herbs. Its molecular structure consists of a kaempferol core attached to a glucose moiety, enhancing its solubility and stability in biological systems. This compound exhibits antioxidant activity, acting to scavenge free radicals and reduce oxidative stress within cells. By neutralizing reactive oxygen species, dihydrokaempferol-3-glucoside helps to protect cellular components such as DNA, proteins, and lipids from oxidative damage.</p>Formula:C21H22O11Purity:Min. 95%Color and Shape:White PowderMolecular weight:450.39 g/mol5-Hydroxy-7,8,2'-trimethoxyflavone
CAS:<p>5-Hydroxy-7,8,2'-trimethoxyflavone is a flavonoid compound, which is a type of polyphenolic molecule. Flavonoids are primarily derived from plants, where they function in various biological roles, including pigmentation, UV filtration, and symbiotic nitrogen fixation. The source of 5-Hydroxy-7,8,2'-trimethoxyflavone is often plants, particularly those known for their medicinal properties.</p>Formula:C18H16O6Purity:Min. 95%Color and Shape:PowderMolecular weight:328.32 g/mol3',5,5',7-Tetrahydroxyflavanone
CAS:<p>3',5,5',7-Tetrahydroxyflavanone is a flavonoid compound, which is a type of naturally occurring polyphenolic. It is primarily derived from certain plants, often found in those with known medicinal properties. Flavonoids are secondary metabolites in plants and play crucial roles in various biological activities.</p>Formula:C15H12O6Purity:Min. 95%Molecular weight:288.25 g/molLicoisoflavanone
CAS:<p>Licoisoflavanone is a naturally occurring flavonoid compound, which is derived from the roots of plants such as Glycyrrhiza glabra, commonly known as licorice. This phytochemical is primarily obtained through extraction and isolation from licorice roots, where it is present as part of a complex mixture of bioactive compounds. The mode of action of licoisoflavanone involves its ability to interact with various biological pathways, including inhibitory effects on bacterial cell wall synthesis and disruption of microbial cellular functions, as well as scavenging free radicals to exert antioxidant effects.</p>Formula:C20H18O6Purity:Min. 95%Molecular weight:354.4 g/molPenduletin
CAS:<p>Penduletin is a flavonoid compound, which is a type of natural phenolic product, primarily sourced from various plant species. This compound occurs naturally as part of the plant's secondary metabolites and plays a crucial role in defense mechanisms. Penduletin exerts its effects primarily through its antioxidant activity, modulating various signaling pathways involved in cellular protection processes. It acts by scavenging free radicals and reducing oxidative stress, which is pivotal in its therapeutic applications.</p>Formula:C18H16O7Purity:Min. 95%Color and Shape:White PowderMolecular weight:344.32 g/molCudraflavanone B
CAS:<p>Cudraflavanone B is a bioactive flavonoid, which is a type of polyphenolic compound. It is derived from natural sources, prominently found in the roots of Cudrania tricuspidata, a plant known for its traditional use in herbal medicine. The mode of action of Cudraflavanone B involves various biochemical pathways, including the modulation of enzyme activity and signaling pathways. It exhibits antioxidant, anti-inflammatory, and antimicrobial properties by interacting with cellular mechanisms that regulate oxidative stress and inflammatory responses.</p>Formula:C20H20O6Purity:Min. 95%Molecular weight:356.40 g/molPodocarpus flavanone
CAS:<p>Podocarpus flavanone is a naturally occurring flavonoid derivative, which is sourced from the Podocarpus genus, a group of coniferous trees native to the Southern Hemisphere. The compound is characterized by its polyphenolic structure, contributing to its ability to engage in a range of biochemical interactions. Its mode of action primarily involves the inhibition of microbial growth through disruption of microbial cell membranes and interference with key enzymatic pathways necessary for cell survival.</p>Formula:C33H26O10Purity:Min. 95%Molecular weight:582.6 g/molFurano(2,3:7,6)-4'-hydroxyflavanone
CAS:<p>Furano(2,3:7,6)-4'-hydroxyflavanone is a sophisticated flavonoid compound, which is a type of polyphenolic molecule commonly found in various plant species. As a naturally derived substance, it originates from the complex biosynthetic pathways in plants, specifically contributing to their defense mechanisms and pigmentation. The mode of action of Furano(2,3:7,6)-4'-hydroxyflavanone involves its interaction with cellular processes, potentially exhibiting antioxidant properties by scavenging free radicals and modulating enzymatic activity related to oxidative stress pathways.</p>Formula:C17H12O4Purity:Min. 95%Molecular weight:280.27 g/molWarangalone
CAS:<p>Warangalone is a type of flavonoid compound, which is derived from the roots of the medicinal plant Abrus precatorius. This compound is characterized by its polyphenolic structure, making it an excellent candidate for various biochemical interactions. Warangalone exhibits its mode of action primarily through the disruption of microbial cell walls, leading to effective antimicrobial activity. Its interactions with microbial membranes result in altered permeability, ultimately inhibiting the growth and replication of various bacterial and fungal species.</p>Formula:C25H24O5Purity:Min. 95%Molecular weight:404.46 g/molVitexin 4'-glucoside
CAS:<p>Vitexin 4'-glucoside is a natural flavonoid glycoside, which is a type of secondary metabolite found in plants. It is derived from various plant sources, particularly in the leaves, stems, and seeds of certain medicinal plants, where it plays roles in plant defense mechanisms and stress responses. As a flavonoid, its mode of action primarily involves antioxidant activity, scavenging free radicals, and modulating oxidative stress. This is significant in the interaction with cellular signaling pathways and enzyme inhibition.</p>Purity:Min. 95%2',5,7-Trihydroxy-8-methoxyflavanone
CAS:<p>2',5,7-Trihydroxy-8-methoxyflavanone is a polyphenolic flavanone compound, which is a type of flavonoid. It is sourced primarily from plant materials, particularly those rich in flavonoid content, such as specific fruits, vegetables, and herbs. This compound exerts its effects primarily through its antioxidant properties, where it functions by scavenging free radicals and inhibiting oxidative stress within biological systems.</p>Formula:C16H14O6Purity:Min. 95%Molecular weight:302.28 g/molKaempferol 3-O-a-L-arabinopyranoside
CAS:<p>Kaempferol 3-O-α-L-arabinopyranoside is a flavonoid glycoside, which is a naturally occurring compound found in a variety of plants, including fruits and vegetables. It is primarily isolated from plant sources such as tea, broccoli, and grapefruit, where it contributes to the plants' defense mechanisms.</p>Formula:C20H18O10Purity:Min. 95%Color and Shape:White PowderMolecular weight:418.35 g/molIsosinensetin
CAS:<p>Isosinensetin is a polymethoxyflavone, which is a type of flavonoid compound. It is primarily sourced from citrus fruits, particularly those belonging to the genus Citrus, such as oranges and tangerines. The compound's mode of action is largely attributed to its various biochemical interactions, such as modulation of signaling pathways, antioxidant activity, and potential anti-inflammatory effects. These actions may influence cellular processes, contributing to its health-promoting properties.</p>Formula:C20H20O7Purity:Min. 95%Color and Shape:PowderMolecular weight:372.37 g/molVincetoxicoside B
CAS:<p>Vincetoxicoside B is a natural compound, specifically a glycoside, which is derived from plant sources, notably within the genus Vincetoxicum. This compound, isolated from certain medicinal plants, represents a significant interest in phytochemistry due to its complex molecular structure and potential biological activities.</p>Purity:Min. 95%4-O-Methylhelichrysetin
CAS:<p>4-O-Methylhelichrysetin is a flavonoid compound, which is a naturally occurring polyphenolic molecule. It is sourced from plants, particularly those in the Helichrysum genus, a group known for their medicinal properties. The mode of action encompasses its ability to modulate various biological pathways, including the inhibition of key enzymes and interference with cell signaling cascades. 4-O-Methylhelichrysetin has shown potential in downregulating pro-inflammatory cytokines and inducing apoptosis in certain cancer cell lines.</p>Formula:C17H16O5Purity:Min. 95%Molecular weight:300.31 g/molFarnisin
CAS:<p>Please enquire for more information about Farnisin including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C16H12O5Purity:Min. 95%Molecular weight:284.26 g/mol5,7,3'-Trihydroxy-4'-methoxy-8-prenylflavanone
CAS:<p>5,7,3'-Trihydroxy-4'-methoxy-8-prenylflavanone is a prenylated flavanone, which is often isolated from various plant sources, particularly those in the Fabaceae family. The compound belongs to a class of naturally occurring polyphenolic compounds that have drawn interest for their diverse biological activities. It is characterized by the presence of a prenyl group and multiple hydroxy and methoxy functional groups, contributing to its unique chemical properties.</p>Formula:C21H22O6Purity:Min. 95%Molecular weight:370.4 g/molDihydrokaempferol-3-O-glucoside
CAS:<p>Dihydrokaempferol-3-O-glucoside is a flavonoid glucoside, which is derived from plant sources, notably found in various fruits and vegetables. This compound is part of the flavonoid family, characterized by its polyphenolic structure and pivotal role in plant physiology and human health. The mode of action of dihydrokaempferol-3-O-glucoside predominantly involves its antioxidant properties. It neutralizes free radicals, thereby reducing oxidative stress and potentially mitigating damage at the cellular level.</p>Formula:C21H22O11Purity:Min. 95%Color and Shape:PowderMolecular weight:450.39 g/mol5,3'-Dihydroxyflavone
CAS:<p>5,3'-Dihydroxyflavone is a flavonoid compound, which is a class of polyphenolic molecules. It is derived from various plants, where it occurs naturally as part of the complex biochemical repertoire involved in defense mechanisms and signaling processes. This compound acts as an antioxidant, neutralizing free radicals and reducing oxidative stress. It also exhibits potential neuroprotective effects by modulating specific signaling pathways and interacting with enzymes linked to inflammation and cellular health.</p>Formula:C15H10O4Purity:Min. 95%Molecular weight:254.24 g/molKaempferol-3-rhamnoglucoside-7-glucoside
CAS:<p>Kaempferol-3-rhamnoglucoside-7-glucoside is a flavonoid glycoside, which is a type of bioactive compound. It is commonly derived from plant sources such as certain fruits, vegetables, and herbs, where it occurs naturally as part of the plant’s secondary metabolites. This compound is structurally characterized by its glycosidic linkages, where sugar moieties such as rhamnose and glucose are attached to the kaempferol backbone.</p>Formula:C33H40O20Purity:Min. 95%Molecular weight:756.66 g/molQuercetin 3-O-rutinoside-7-O-glucoside
CAS:<p>Quercetin 3-O-rutinoside-7-O-glucoside is a flavonoid derivative, which is a specialized plant metabolite known for its diverse bioactive properties. Extracted primarily from plant sources, this compound is a glycoside derivative of quercetin, a well-known flavonoid found abundantly in fruits and vegetables. The specific glycosylation at the 3-O-rutinoside and 7-O-glucoside positions enhances its solubility and bioavailability compared to its aglycone form.</p>Formula:C33H40O21Purity:Min. 95%Molecular weight:772.66 g/molR-Equol
CAS:<p>R-Equol is a chiral compound classified as an isoflavandiol, which is a type of non-steroidal estrogen. It is derived from the metabolic conversion of daidzein, an isoflavone predominantly found in soy products, by intestinal microbiota in some individuals. The presence of equol-producing bacteria is necessary for this biotransformation process.</p>Purity:Min. 95%Vitexin-2''-xyloside
CAS:<p>Vitexin-2''-xyloside is a bioactive flavonoid glycoside, which is derived from various plant sources such as Hawthorn and Passiflora species. This compound is part of a class of natural products known for their significant pharmacological activities. The mode of action primarily involves antioxidative mechanisms, where it mitigates oxidative stress by scavenging free radicals and modulating antioxidant enzyme activity. Additionally, it exhibits anti-inflammatory effects through the inhibition of pro-inflammatory cytokines and pathways.</p>Formula:C26H28O14Purity:Min. 95%Molecular weight:564.49 g/mol4'-Hydroxywogonin
CAS:<p>4'-Hydroxywogonin is a bioactive flavonoid, which is derived primarily from the roots of the plant *Scutellaria baicalensis*. This compound is a naturally occurring flavone, a subclass of flavonoids, known for its potential therapeutic properties. The mode of action of 4'-Hydroxywogonin involves its ability to modulate various cellular signaling pathways. It is particularly noted for its anti-inflammatory and antioxidant effects, which are mediated through the inhibition of pro-inflammatory cytokines and the scavenging of free radicals, respectively.</p>Formula:C16H12O6Purity:Min. 95%Color and Shape:SolidMolecular weight:300.26 g/molParvisoflavanone
CAS:<p>Parvisoflavanone is a naturally occurring flavanone, which is a type of plant-derived polyphenolic compound. It is sourced from various botanical origins, particularly within certain species of the plant kingdom known for their traditional medicinal uses. The mode of action of Parvisoflavanone involves its interaction with biological pathways that are implicated in antioxidative stress responses and anti-inflammatory mechanisms. It may act as a regulator of cellular signaling processes, thereby influencing cell proliferation and apoptosis.</p>Formula:C17H16O7Purity:Min. 95%Molecular weight:332.3 g/mol3',5-Dihydroxy-4',6,7-trimethoxyflavanone
CAS:<p>3',5-Dihydroxy-4',6,7-trimethoxyflavanone is a naturally occurring flavonoid, which is a type of polyphenolic compound. This product is primarily sourced from various plant species known to produce flavonoids as secondary metabolites. Its mode of action involves the inhibition of specific enzymes and modulation of signaling pathways, which can lead to antioxidant and anti-inflammatory effects.</p>Formula:C18H18O7Purity:Min. 95%Molecular weight:346.3 g/molAmentoflavone-7,7'',4',4''- tetramethyl ether
CAS:<p>Amentoflavone-7,7'',4',4''-tetramethyl ether is a specialized bioflavonoid derivative, which is synthesized from the natural biflavonoid amentoflavone found in various plant sources, such as Ginkgo biloba and St. John's Wort. The structural modification involving methylation enhances its pharmacokinetic properties, such as bioavailability and metabolic stability, making it a subject of interest in the scientific community.</p>Formula:C34H26O10Purity:Min. 95%Molecular weight:594.56 g/mol5,7-Dimethoxyflavanone
CAS:<p>5,7-Dimethoxyflavanone is a flavonoid derivative, which is a type of polyphenolic compound predominantly found in plants. This compound is often isolated from various botanical sources, where it contributes to the plant's adaptive defense mechanisms against environmental stressors. The mode of action of 5,7-Dimethoxyflavanone involves interaction with cellular signaling pathways, potentially influencing antioxidant, anti-inflammatory, and enzyme inhibition activities through modulation of molecular targets.</p>Formula:C17H16O4Purity:Min. 95%Molecular weight:284.31 g/mol5,7,4'-Trihydroxyisoflavanone
CAS:<p>5,7,4'-Trihydroxyisoflavanone is a bioactive isoflavonoid, which is typically derived from various plant sources, including legumes and certain medicinal herbs. This compound belongs to the class of natural products known as isoflavonoids, which are structurally characterized by the presence of a 3-phenylchroman skeleton.</p>Formula:C15H12O5Purity:Min. 95%Color and Shape:White to beige solid.Molecular weight:272.25 g/molIsowighteone
CAS:<p>Isowighteone is a naturally occurring flavonoid, which is derived from various plant sources, particularly in traditional medicinal herbs. Its biological activity stems from its structure, characterized by phenolic hydroxyl groups that enable it to participate in redox reactions, highlighting its antioxidant properties.</p>Formula:C20H18O5Purity:Min. 95%Molecular weight:338.35 g/molSotetsuflavone
CAS:<p>Sotetsuflavone is a flavonoid-based compound, which is a type of product derived from natural plant sources, specifically certain species in the Cycad family. It is characterized by its complex chemical structure, which enables it to interact with various biological systems. The mode of action of Sotetsuflavone involves modulation of signaling pathways and interaction with specific cellular receptors, which can influence enzymatic activity and gene expression. These interactions suggest its potential in influencing oxidative stress and inflammatory responses.</p>Formula:C31H20O10Purity:Min. 95%Molecular weight:552.48 g/molIsomucronulatol
CAS:<p>Isomucronulatol is a naturally occurring flavonoid compound, which is a secondary metabolite sourced primarily from various plant species. It exhibits significant antioxidant activity by scavenging free radicals and reducing oxidative stress, which can damage cellular components such as lipids, proteins, and DNA. Additionally, Isomucronulatol demonstrates anti-inflammatory effects by modulating signaling pathways involved in the inflammatory response, thereby reducing the production of pro-inflammatory cytokines.</p>Formula:C17H18O5Purity:Min. 95%Color and Shape:PowderMolecular weight:302.32 g/mol6,4'-Dihydroxy-7-methoxyflavanone
CAS:<p>6,4'-Dihydroxy-7-methoxyflavanone is a naturally occurring flavanone compound, which is typically derived from various plant sources known for their rich polyphenolic content. This compound is characterized by its unique chemical structure, including hydroxyl and methoxy functional groups, contributing to its bioactivity.</p>Formula:C16H14O5Purity:Min. 95%Molecular weight:286.28 g/molScutellarein tetramethyl ether
CAS:<p>Scutellarein tetramethyl ether is a methylated flavonoid compound, which is a result of structural modifications to scutellarein, itself a naturally occurring flavone. This compound is derived from various plant sources, particularly those within the Scutellaria genus, known for their bioactive flavonoid content. The modification involves methylation of hydroxyl groups, which can augment its bioavailability and stability.</p>Formula:C19H18O6Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:342.34 g/mol8-Hydroxygenistein-7,8,4'-trimethyl ether
CAS:<p>8-Hydroxygenistein-7,8,4'-trimethyl ether is a phytochemical derivative, which is sourced from plant metabolites, specifically isoflavonoids. This compound is modified through methylation processes to enhance its stability and lipophilicity, making it a subject of interest in various biochemical studies. Its mode of action primarily involves interaction with cellular signaling pathways, influencing antioxidant mechanisms and potentially affecting gene expression related to oxidative stress.</p>Formula:C18H16O6Purity:Min. 95 Area-%Color and Shape:Yellow PowderMolecular weight:328.32 g/mol2-(3,4-Dihydroxyphenyl)-3,7-dihydroxy-4H-chromen-4-one hydrate
CAS:<p>2-(3,4-Dihydroxyphenyl)-3,7-dihydroxy-4H-chromen-4-one hydrate is a flavonoid compound, which is a polyphenolic molecule derived primarily from plant sources, particularly fruits, vegetables, and certain herbs. This compound functions as a potent antioxidant, neutralizing free radicals and reducing oxidative stress at the cellular level by donating hydrogen atoms, which plays a critical role in protecting biological macromolecules from damage and contributing to cellular homeostasis.</p>Formula:C15H10O6·H2OPurity:Min. 95%Molecular weight:304.25 g/mol5,6,7,8-Tetrahydroxyflavone
CAS:<p>5,6,7,8-Tetrahydroxyflavone is a naturally derived flavonoid, which is isolated from various plants known for their rich polyphenolic content. This compound belongs to the broader class of flavonoids, compounds renowned for their antioxidative properties. Its mode of action involves modulation of various cellular pathways, including the inhibition of oxidative stress and modulation of enzyme activities, which are critical for cellular homeostasis and protection.</p>Purity:Min. 95%Pomiferin
CAS:<p>Pomiferin is a polyphenolic compound, which is a bioactive flavonoid derived from the fruit of the Osage orange tree, scientifically known as Maclura pomifera. This compound is primarily extracted from the osage orange's pulp and seeds. The mode of action of pomiferin involves its potent antioxidant capabilities, which allow it to effectively scavenge reactive oxygen and nitrogen species, thereby mitigating oxidative stress. Additionally, pomiferin has demonstrated anti-inflammatory properties, likely mediated through the modulation of signaling pathways and the downregulation of pro-inflammatory cytokines.</p>Formula:C25H24O6Purity:Min. 95%Molecular weight:420.45 g/mol2-O-β-L-Galactopyranosylorientin
CAS:<p>2-O-beta-L-Galactopyranosylorientin is a flavonoid glycoside, which is a subclass of naturally occurring polyphenolic compounds. This product is typically isolated from plant sources, notably those belonging to the family Poaceae. Its structure consists of an orientin molecule glycosylated with a galactose sugar moiety, enhancing its solubility and biological activity.</p>Purity:Min. 95%7-Hydroxy-2',5,8-trimethoxyflavanone
CAS:<p>7-Hydroxy-2',5,8-trimethoxyflavanone is a flavonoid compound, which is a type of naturally occurring phenolic compound. It can be sourced primarily from certain plant species, where it plays a role in the plant's defense mechanism against environmental stressors. Flavonoids like this one often exhibit a variety of biological activities.</p>Formula:C18H18O6Purity:Min. 95%Molecular weight:330.3 g/molDaidzein bis-tert-butyldimethylsilyl ether
CAS:<p>Daidzein bis-tert-butyldimethylsilyl ether is a synthetic derivative of the isoflavone daidzein, which is primarily sourced from soybeans and other legumes. It’s modified through the attachment of tert-butyldimethylsilyl ether groups, enhancing its stability and facilitating its use in various experimental conditions. This compound acts as a precursor or an intermediate in the synthesis of other complex molecules, allowing detailed structural or functional studies on isoflavones in biochemical pathways.</p>Formula:C27H38O4Si2Purity:Min. 95%Molecular weight:482.76 g/molRhamnetin-3-rutinoside
CAS:<p>Rhamnetin-3-rutinoside is a specialized bioflavonoid, a type of plant-derived polyphenolic compound. It is typically sourced from various plant species, where it naturally occurs as part of the plant’s secondary metabolites. This compound functions primarily as an antioxidant, where its mode of action involves scavenging free radicals and stabilizing reactive oxygen species, thereby protecting cells from oxidative stress.</p>Formula:C28H32O16Purity:Min. 95%Molecular weight:624.54 g/molVaccarin
CAS:<p>Vaccarin is a bioactive flavonoid, which is derived from the plant Vaccaria segetalis. It is a naturally occurring compound, primarily sourced from the seeds of this plant. The mode of action of Vaccarin involves its ability to interact with various biological pathways, particularly those related to anti-inflammatory and antioxidant processes. It acts by modulating enzyme activity and gene expression associated with these pathways, potentially influencing cellular behavior and physiological responses.</p>Formula:C32H38O19Purity:Min. 95%Molecular weight:726.63 g/molLicoisoflavone A
CAS:<p>Licoisoflavone A is a naturally occurring isoflavone, which is extracted from plants of the Glycyrrhiza genus, notably known for their medicinal applications. This compound exhibits a unique mode of action, primarily through its anti-inflammatory and antioxidant activities, which involve modulation of various signaling pathways and inhibition of pro-inflammatory cytokines. By influencing these pathways, Licoisoflavone A can mitigate oxidative stress and reduce inflammation, showcasing its potential in therapeutic applications.</p>Purity:Min. 95%3-(4-Methyl benzoyloxy)flavone
CAS:<p>3-(4-Methyl benzoyloxy)flavone is a synthetic flavonoid ester, which is derived from chemical modification of natural flavonoids. Flavonoids are a class of polyphenolic compounds commonly found in various fruits, vegetables, and beverages. The introduction of the 4-methylbenzoyloxy group offers structural diversity, which may enhance or modify the biological activities traditionally associated with flavonoids.</p>Formula:C23H16O4Purity:Min. 95%Molecular weight:356.37 g/mol5,6,2'-Trimethoxyflavone
CAS:<p>5,6,2'-Trimethoxyflavone is a naturally occurring flavone compound, which is a type of polyphenolic compound found in various botanical species. It is derived primarily from plants belonging to the genus Kaempferia, as well as other related species that are known for their diverse secondary metabolites.</p>Formula:C18H16O5Purity:Min. 95%Molecular weight:312.32 g/molKaempferol-3,7-dirhamnoside
CAS:<p>Kaempferol-3,7-dirhamnoside is a flavonoid glycoside, which is commonly found in various plant species, particularly those in the Fabaceae family. This compound is structurally composed of the flavonoid kaempferol, linked to two rhamnopyranoside sugar moieties. It is primarily sourced from plants such as Tephrosia purpurea, where it plays a role in the plant's defense mechanisms.</p>Formula:C27H30O14Purity:Min. 95%Molecular weight:578.52 g/molOmbuin
CAS:<p>Ombuin is a flavonoid compound, which is a naturally occurring substance found in a variety of plants. It functions primarily as an antioxidant by scavenging free radicals and inhibiting oxidative stress within biological systems. This mode of action is pivotal in mitigating cellular damage, thereby contributing to anti-inflammatory processes.</p>Formula:C17H14O7Purity:Min. 95%Color and Shape:SolidMolecular weight:330.29 g/mol3'-Methoxypuerarin
CAS:<p>3'-Methoxypuerarin is a specialized isoflavone derivative, which is a type of phytochemical compound. This compound is primarily sourced from the roots of *Pueraria* species, which are well-known for their rich content of isoflavones. As an organic chemical, 3'-Methoxypuerarin exhibits potential pharmacological activity by interacting with various cellular pathways, often involving signal transduction mechanisms.</p>Formula:C22H22O10Purity:Min. 95%Color and Shape:White PowderMolecular weight:446.4 g/molBavachinin A
CAS:<p>Bavachinin A is a prenylated flavanone, which is a type of natural compound. It is sourced from the seeds of Psoralea corylifolia, a plant commonly found in traditional Chinese and Indian medicine. The compound exhibits its mode of action primarily through the modulation of specific cellular pathways, including the inhibition of certain enzymes and interaction with receptor sites that play a crucial role in inflammatory and oxidative stress responses.</p>Formula:C21H22O4Purity:Min. 95%Color and Shape:SolidMolecular weight:338.4 g/molKumatakenin
CAS:<p>Kumatakenin is a naturally occurring flavonoid compound, which is derived from various plant sources, particularly in the Meliaceae family. It functions as an antioxidant by scavenging free radicals and reducing oxidative stress at the molecular level. The compound interacts with reactive oxygen species (ROS) using its phenolic hydroxyl groups, effectively neutralizing them and preventing cellular damage.</p>Formula:C17H14O6Purity:(%) Min. 95%Color and Shape:PowderMolecular weight:314.29 g/molCinnamtannin B-1
CAS:<p>Cinnamtannin B-1 (LDN 0022358) is an A-type proanthocyanidin contained in several plant species such as Vaccinium vitis-idaea, Laurus nobilis L., Cinnamomum</p>Formula:C45H36O18Purity:99.72%Color and Shape:SolidMolecular weight:864.76Quercetin 3,4'-diglucoside
CAS:<p>Quercetin 3,4'-diglucoside is a flavonoid glycoside, which is a compound naturally derived from various plant sources, including certain fruits and vegetables. This compound is known for its significant role as an antioxidant. It operates by scavenging free radicals, thereby mitigating oxidative stress at the cellular level. This mode of action makes it a compound of interest in studies related to inflammation, aging, and chronic diseases.</p>Formula:C27H30O17Purity:Min. 95%Color and Shape:PowderMolecular weight:626.52 g/molDemethylretusin
CAS:<p>Demethylretusin is a naturally occurring flavonoid, which is derived primarily from various plant sources, including soybeans and other legumes. It functions as a bioactive compound with the capability to modulate multiple biochemical pathways. The mode of action of Demethylretusin involves interacting with cellular receptors and enzymes, ultimately influencing cell signaling pathways and exhibiting antioxidative, anti-inflammatory, and potential anticancer properties.</p>Formula:C15H10O5Purity:Min. 95%Color and Shape:PowderMolecular weight:270.24 g/molMorusin
CAS:<p>Morusin is a naturally occurring flavonoid compound, which is derived primarily from the root bark of Morus alba, commonly known as the mulberry tree. This bioactive substance is known for its various chemical properties and its ability to modulate several biological pathways. The compound acts primarily through the inhibition of key signaling pathways, such as the NF-κB and MAPK pathways, which are involved in inflammation and cancer progression.</p>Formula:C25H24O6Purity:Min. 95%Color and Shape:Yellow PowderMolecular weight:420.45 g/molBaicalin 7-b-D-glucuronide
CAS:<p>Baicalin 7-b-D-glucuronide is a flavonoid metabolite, which is primarily derived from the root of the plant *Scutellaria baicalensis*, commonly known as Chinese skullcap. This compound occurs as part of the extensive array of flavonoids in traditional medicinal plants used in various ethnic medicine systems.</p>Formula:C21H18O11Purity:Min. 95 Area-%Color and Shape:White PowderMolecular weight:446.36 g/mol3'-Prenylnaringenin
CAS:<p>3'-Prenylnaringenin is a potent phytoestrogen, a type of compound that is found in hops (Humulus lupulus), specifically in the female flowers or cones. This prenylflavonoid is particularly notable for its strong estrogenic activity attributed to its binding affinity to estrogen receptors. As such, it functions as an agonist, modulating estrogen receptor-mediated pathways and influencing gene expression related to estrogenic activity.</p>Purity:Min. 95%(+)-Pinocembrin
CAS:<p>(+)-Pinocembrin is a flavonoid compound, which is a naturally occurring phytochemical. It is predominantly sourced from propolis, a resinous substance produced by bees, and also found in various plants such as honey and ginger root. The mode of action of (+)-Pinocembrin involves its potent antioxidant and antimicrobial properties. It acts by scavenging free radicals, thereby protecting cells from oxidative stress, and it also interferes with microbial cell membranes, leading to antimicrobial effects.</p>Formula:C15H12O4Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:256.25 g/molIsoflavone - 40%
CAS:<p>Isoflavone - 40% is a phytochemical compound, specifically classified as a type of polyphenolic plant-derived compound. It is sourced primarily from soybeans and other legumes, where it naturally occurs as part of the plant's secondary metabolites. The mode of action of isoflavones involves their ability to mimic estrogen. Due to their structural similarity to estrogen, isoflavones can bind to estrogen receptors and exert weak estrogenic effects, which are particularly relevant in humans and animals.</p>Formula:C15H10O2Purity:Min. 95%Color and Shape:Off-White Clear LiquidMolecular weight:222.24 g/molDimoxystrobin
CAS:<p>Dimoxystrobin is a fungicidal compound, which is a synthetic chemical derived from the strobilurin class of fungicides. It is sourced from natural antifungal compounds originally discovered in certain mushroom species. Dimoxystrobin's mode of action involves inhibiting mitochondrial respiration in fungi by binding to the Qo site of the cytochrome bc1 complex. This interference disrupts energy production in fungal cells, leading to their effective control and eventual death.</p>Formula:C19H22N2O3Purity:Min. 95%Molecular weight:326.39 g/molKaempferol-7,4'-dimethyl ether
CAS:<p>Kaempferol-7,4'-dimethyl ether is a flavonoid derivative, which is a naturally occurring compound predominantly found in certain plant species. As a derivative of kaempferol, it is an O-methylated flavonoid, often isolated from various members of the Leguminosae family. Its mode of action involves interacting with multiple biological pathways, typically exhibiting antioxidant and anti-inflammatory properties. This potent flavonoid modulates signaling pathways and can influence cellular energy metabolism, often impacting reactive oxygen species (ROS) levels.</p>Formula:C17H14O6Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:314.29 g/molMorelloflavone
CAS:<p>Morelloflavone is a natural biflavonoid compound, which is primarily isolated from the Garcinia species, belonging to the Clusiaceae family. This compound is derived from plant sources that have been traditionally used in various medicinal systems. Morelloflavone exhibits its mode of action through multiple biochemical pathways, prominently including its antioxidant activity. It effectively scavenges free radicals, thereby protecting cells from oxidative stress, which is implicated in numerous pathological conditions.</p>Purity:Min. 95%3'-Methoxy-3,7,4'-trihydroxyflavone
CAS:<p>3'-Methoxy-3,7,4'-trihydroxyflavone is a naturally occurring flavonoid compound, which is derived from various plant sources, such as fruits, vegetables, and medicinal herbs. This compound is known for its potent antioxidant activity, which is primarily achieved through the scavenging of reactive oxygen species and the inhibition of oxidative stress pathways.</p>Formula:C16H12O6Purity:Min. 95%Color and Shape:PowderMolecular weight:300.26 g/molQuercetin-7-O-β-D-glucopyranoside
CAS:<p>Quercetin-7-O-β-D-glucopyranoside is a flavonoid glycoside, which is a specialized type of bioactive compound found predominantly in various plants. Structurally, it constitutes quercetin—a well-known flavonoid—conjugated with a glucose molecule, specifically at the 7th position of the quercetin structure. This compound is primarily sourced from fruits, vegetables, and various herbs.</p>Formula:C21H20O12Purity:Min. 95%Color and Shape:Yellow PowderMolecular weight:464.38 g/mol3,7-Dimethoxy-3',4',5-Trihydroxyflavone
CAS:<p>3,7-Dimethoxy-3',4',5-Trihydroxyflavone is a flavonoid compound, which is derived from various plant sources known for their bioactive compounds. These plants are rich in polyphenolic substances, contributing to the compound's complex structure and functionality. The mode of action of 3,7-Dimethoxy-3',4',5-Trihydroxyflavone involves its ability to act as a potent antioxidant. It scavenges free radicals and reduces oxidative stress by neutralizing reactive oxygen species at the molecular level. Additionally, its molecular configuration allows for interactions with cellular signaling pathways, potentially influencing various biochemical processes.</p>Formula:C17H14O7Purity:Min. 95%Molecular weight:330.29 g/molAlpinumisoflavone
CAS:<p>Alpinumisoflavone is a naturally occurring isoflavone, which is derived from plants, particularly those in the Leguminosae family. Structurally, isoflavones are a class of phytoestrogens, plant-derived compounds with estrogenic activity. Alpinumisoflavone exerts its effects primarily through its antioxidant and anti-inflammatory activities. It modulates key signaling pathways by interacting with cellular components to reduce oxidative stress and inhibit inflammatory responses, making it a valuable compound in studying cellular protection mechanisms.</p>Formula:C20H16O5Purity:Min. 95%Color and Shape:White PowderMolecular weight:336.34 g/molMyricetin-3-galactoside
CAS:<p>Myricetin-3-galactoside is a flavonoid glycoside, which is a type of secondary metabolite originating from various plant sources, including fruits, vegetables, and certain herbs. This compound forms when the flavonol, myricetin, is glycosylated with a galactose molecule. Its structure enhances the stability and solubility of myricetin, thereby modulating its bioavailability and biological activity.</p>Formula:C21H20O13Purity:Min. 95%Color and Shape:Slightly Yellow PowderMolecular weight:480.38 g/molIridin
CAS:<p>Iridin is an isoflavone glycoside derived primarily from the rhizomes of certain species of the Iris plant. As a phytochemical compound, its source is botanical, particularly extracted from Iris versicolor, known commonly as the Blue Flag plant. The mode of action for Iridin involves its role as a glycoside compound, which influences various biochemical pathways in the body. Glycosides like Iridin are known for their potential to modulate enzyme activities, interact with cellular signals, and participate in the process of detoxification within the liver.</p>Formula:C24H26O13Purity:Min. 98 Area-%Color and Shape:Off-White Yellow PowderMolecular weight:522.46 g/molHinokiflavone
CAS:<p>A cytotoxic biflavonoid from Toxicodendron succedaneum, Juniperus sp., and Chamaecyparis obtusa (hinoki).</p>Formula:C30H18O10Purity:Min. 97 Area-%Color and Shape:PowderMolecular weight:538.46 g/molVelutin
CAS:<p>Velutin is a natural flavonoid, which is derived from the leaves of certain plant species, specifically from the Asteraceae family. This compound demonstrates a unique mode of action by modulating various signaling pathways involved in inflammation and oxidative stress. Velutin effectively inhibits the activation of nuclear factor kappa-light-chain-enhancer of activated B cells (NF-κB) and reduces the expression of pro-inflammatory cytokines, contributing to its anti-inflammatory properties.</p>Formula:C17H14O6Purity:Min. 95%Color and Shape:PowderMolecular weight:314.29 g/mol3,5-Dihydroxyflavone
CAS:<p>3,5-Dihydroxyflavone is a flavonoid compound, which is a type of natural product commonly found in plants. This compound is derived from various plant sources, where it serves as a secondary metabolite involved in plant defense mechanisms. 3,5-Dihydroxyflavone exerts its effects through several mechanisms, including modulating oxidative stress and interacting with cellular signaling pathways. Its antioxidant properties allow it to scavenge free radicals, thereby protecting cells from oxidative damage. Additionally, it can influence various enzymes and receptors involved in cellular processes, leading to a range of biological effects.</p>Formula:C15H10O4Purity:Min. 95%Color and Shape:Off-White PowderMolecular weight:254.24 g/molDiosmetin-7-neohesperidoside
CAS:<p>Diosmetin-7-neohesperidoside is a flavonoid glycoside, which is a secondary metabolite predominantly found in citrus fruits. This compound acts through various biochemical pathways, importantly exhibiting potent antioxidant and anti-inflammatory activities. Its mode of action involves the scavenging of free radicals and modulation of enzyme activities that contribute to inflammatory responses.</p>Formula:C28H32O15Purity:Min. 95%Molecular weight:608.54 g/molIsovitexin
CAS:<p>Isovitexin is a naturally occurring flavonoid compound, specifically a C-glycosyl flavone, which is found in a variety of plants, including green tea, passionflower, and barley leaves. Derived from these botanical sources, isovitexin is characterized by its structural complexity, contributing to its biological activity. The mode of action of isovitexin involves its ability to scavenge free radicals and inhibit oxidative stress. It exhibits strong antioxidant properties that allow it to stabilize reactive oxygen species (ROS), thereby preventing cellular damage. Additionally, isovitexin has been studied for its potential anti-inflammatory and neuroprotective effects, attributed to its influence on signaling pathways and enzyme activities related to inflammation and cell survival. Isovitexin is primarily utilized in the context of scientific research to explore its pharmacological potentials. Researchers study its application in fields such as neuroprotection, cardioprotection, and its role in mitigating the effects of metabolic disorders. Its broad spectrum of activity makes it a compound of interest in both the development of therapeutic agents and the enhancement of nutritional supplements.</p>Formula:C21H20O10Purity:Min. 98 Area-%Color and Shape:Off-White Yellow PowderMolecular weight:432.38 g/molIsoscutellarein
CAS:<p>Isoscutellarein is a flavonoid compound, which is naturally derived from various plant sources, including herbs and certain vegetables. It functions primarily as an antioxidant, scavenging free radicals and reducing oxidative stress within biological systems. This activity is attributed to its ability to donate hydrogen atoms or electrons, thus stabilizing reactive oxygen species (ROS).</p>Formula:C15H10O6Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:286.24 g/mol6-Methoxyflavone
CAS:<p>6-Methoxyflavone is a flavonoid compound, which is a naturally occurring product found in certain plants. It is characterized by the presence of a methoxy group attached to the flavone backbone. This compound is typically extracted from plant sources such as citrus fruits and certain herbs that have a high content of polyphenolic compounds. Its mode of action involves modulating various biochemical pathways, including the inhibition of specific enzymes and interaction with cellular receptors, potentially affecting oxidative stress and inflammation pathways.</p>Formula:C16H12O3Purity:Min. 95%Color and Shape:White PowderMolecular weight:252.26 g/molNaringenin-7-rutinoside
CAS:<p>Naringenin-7-rutinoside is a flavonoid glycoside, which is naturally sourced from citrus fruits, such as grapefruits and oranges. This compound is characterized by its unique molecular structure where the flavonoid naringenin is bound to the disaccharide rutinose. The mode of action of naringenin-7-rutinoside primarily involves its antioxidant properties, which allow it to scavenge free radicals and reduce oxidative stress in biological systems.</p>Formula:C27H32O14Purity:Min. 98 Area-%Color and Shape:White PowderMolecular weight:580.53 g/molQuercetin
CAS:<p>Inhibitor of HSP70 and HSP27 expression</p>Formula:C15H10O7Purity:Min. 95 Area-%Color and Shape:Yellow PowderMolecular weight:302.24 g/molQuercetagetin-7-O-glucoside
CAS:<p>Quercetagetin-7-O-glucoside is a flavonoid glycoside, which is a type of phytochemical compound. It is derived from various plant sources, notably plants in the Asteraceae family. The compound consists of the flavonoid quercetagetin and a glucose molecule, forming a glycoside linkage. Its mode of action primarily involves antioxidant activity, where it scavenges free radicals and chelates metal ions, thus potentially reducing oxidative stress in biological systems.</p>Formula:C21H20O13Purity:Min. 95%Molecular weight:480.38 g/molBiochanin A
CAS:<p>Biochanin A is a naturally occurring isoflavone, which is derived from plants such as red clover and soy. This compound functions as a phytoestrogen, exerting its effects by modulating estrogen receptors, and showcases antioxidant capabilities through the scavenging of free radicals. As a result, Biochanin A holds significant interest for research in the modulation of hormonal pathways and in providing protection against oxidative stress.</p>Formula:C16H12O5Purity:Min. 95%Color and Shape:White PowderMolecular weight:284.26 g/molJamaicin
CAS:<p>Jamaicin (AnCoA4), an isoflavone derived from the chickweed plant, is an inhibitor of the STIM1-Orai1 channel that blocks calcium ion influx.</p>Formula:C22H18O6Purity:99.32%Color and Shape:SolidMolecular weight:378.374'-Hydroxy-7-methoxyisoflavone
CAS:<p>4'-Hydroxy-7-methoxyisoflavone is a naturally occurring isoflavone, which is a type of phytoestrogen found in various plants. It is synthesized typically from plant sources and is part of a broader class of compounds known for their presence in legumes, especially soy and red clover. The mode of action of 4'-Hydroxy-7-methoxyisoflavone is primarily through its interaction with estrogen receptors, where it can exhibit weak estrogenic activity. This attribute allows it to modulate estrogenic signaling pathways, influencing cellular processes related to growth and metabolism.</p>Formula:C16H12O4Purity:Min. 95%Molecular weight:268.26 g/molKaempferol-3-O-glucorhamnoside
CAS:<p>Kaempferol-3-O-glucorhamnoside is a bioactive flavonoid glycoside, which is a naturally occurring compound found in a variety of plants. It serves as a significant molecule in the study of plant biochemistry and pharmacology. This compound is sourced from various plant species such as tea, broccoli, and other common vegetables and fruits, where it contributes to the plant's defense mechanisms against environmental stresses.</p>Formula:C27H30O15Purity:Min. 95%Color and Shape:PowderMolecular weight:594.52 g/molFlavanone hydrazone, 93%
CAS:<p>Flavanone hydrazone (FH) is a natural compound that has been found to have antiviral activity against a number of viruses, including the papilloma virus and picornavirus. The antiviral activity of FH is due to its ability to inhibit the shikimate pathway, which is required for the synthesis of aromatic amino acids from chorismate. This inhibition prevents the production of viral proteins, leading to cell death. FH also has an inhibitory effect on hepatitis C virus and leukoplakia by inhibiting fatty acid synthesis. It may also be used in the treatment of inflammatory diseases such as rheumatoid arthritis and ulcerative colitis.</p>Formula:C15H14N2OPurity:(%) Min. 93%Color and Shape:PowderMolecular weight:238.28 g/mol5-Hydroxy-7,8-dimethoxyflavanone
CAS:<p>5-Hydroxy-7,8-dimethoxyflavanone is a naturally occurring flavanone, which is typically sourced from various plant species known for their bioactive compounds. This compound falls under the category of flavonoids and exhibits distinct structural features that contribute to its biochemical activities. The source plants for this flavanone are often part of traditional medicinal systems, owing to their rich profile of secondary metabolites.</p>Formula:C17H16O5Purity:Min. 95%Molecular weight:300.3 g/molLuteolin 7-diglucuronide
CAS:<p>Luteolin 7-diglucuronide is the major flavonoid isolated from Verbena officinalis and Aloysia triphylla.</p>Formula:C27H26O18Purity:98.24% - 98.44%Color and Shape:SolidMolecular weight:638.48(S)-Naringenin
CAS:<p>(S)-Naringenin is a naturally occurring flavonoid compound, which is found predominantly in citrus fruits, such as grapefruits and oranges. Its source lies within the plant secondary metabolites known for their diverse biological activities. As a flavanone, (S)-naringenin acts primarily as an antioxidant, effectively scavenging reactive oxygen species and thereby protecting cells from oxidative stress. Additionally, it exhibits anti-inflammatory actions by modulating various signaling pathways and inhibiting the production of pro-inflammatory cytokines.</p>Formula:C15H12O5Purity:Min. 95%Color and Shape:Grey SolidMolecular weight:272.25 g/mol6-Prenylpinocembrin
CAS:<p>6-Prenylpinocembrin is a prenylated flavonoid compound, which is derived from various natural sources, particularly plants such as those found in the Leguminosae family. This compound is characterized by the addition of a prenyl group to the flavonoid pinocembrin, enhancing its lipophilicity and potential biological activity.</p>Formula:C20H20O4Purity:Min. 95%Molecular weight:324.37 g/molFluoxastrobin
CAS:<p>Fluoxastrobin is a fungicide, which is a synthetic agricultural chemical developed primarily to combat fungal infections in crops. It belongs to the strobilurin class, derived from natural compounds produced by certain fungi. The mode of action of fluoxastrobin involves the inhibition of mitochondrial respiration in fungal cells. By targeting the cytochrome bc1 complex in the mitochondria, it effectively disrupts energy production within the pathogen, leading to its death.</p>Formula:C21H16CIFN4O5Purity:Min. 95%Molecular weight:562.29 g/mol7-Hydroxy-2',4'-dimethoxyisoflavone
CAS:<p>7-Hydroxy-2',4'-dimethoxyisoflavone is a synthetic isoflavone, which is derived from the structural modification of natural isoflavones found in various plants, such as soybeans and other legumes. It exerts its biological activity primarily through its interaction with cellular signaling pathways related to oxidative stress and inflammation. This compound functions by modulating enzyme activity, influencing the expression of genes involved in antioxidant defenses, and suppressing pro-inflammatory cytokines.</p>Formula:C17H14O5Purity:Min. 95%Molecular weight:298.29 g/molVitexin-4'-rhamnoside
CAS:<p>Vitexin-4'-rhamnoside is a flavonoid glycoside, which is a compound derived from plants such as hawthorn and certain types of buckwheat. This compound belongs to the class of natural products known as flavonoid glycosides, which are well-regarded for their diverse biological activities. Vitexin-4'-rhamnoside is characterized by its ability to scavenge free radicals, thanks to its antioxidant properties. This action is primarily achieved by donating hydrogen atoms or electrons to neutralize reactive oxygen species, thereby mitigating oxidative stress.</p>Purity:Min. 95%Kaempferol 6-C-glucoside
CAS:<p>Kaempferol 6-C-glucoside is a flavonoid glycoside, which is a natural compound found in various plant sources, particularly in leaves and fruits. It is a type of C-glycosyl flavonoid, where the glucose moiety is bound directly to the carbon atom of the flavonoid skeleton, differentiating it from the more common O-glycosides.</p>Formula:C21H20O11Purity:Min. 95%Molecular weight:448.38 g/molSumatrol
CAS:<p>Sumatrol is a selective herbicide, which is a compound derived from synthetic sources designed to inhibit the growth of unwanted vegetation. It functions primarily by disrupting specific physiological processes in plants, specifically targeting the enzymatic pathways critical for the growth of broadleaf weeds and grasses. Its action mechanism involves the inhibition of key enzymes that lead to the cessation of cellular division and growth within the targeted plant species.</p>Formula:C23H22O7Purity:(%) Min. 95%Color and Shape:White PowderMolecular weight:410.42 g/molCajanol
CAS:<p>Cajanol is a naturally occurring compound, which is a flavonoid isolated from the plant *Cajanus cajan* (commonly known as pigeon pea). This compound is primarily extracted from the leaves and seeds of the plant through various chromatographic techniques, ensuring high purity and bioactive consistency. Cajanol functions by interacting with cellular pathways, exhibiting antioxidant and anti-inflammatory properties. It achieves this through the scavenging of free radicals and modulation of signaling pathways involved in cellular stress responses.</p>Formula:C17H16O6Purity:Min. 95%Color and Shape:PowderMolecular weight:316.31 g/mol5,7,3'-Trihydroxyflavone
CAS:<p>5,7,3'-Trihydroxyflavone is a flavonoid compound, which is a type of polyphenolic molecule found in plants. This compound is derived from various plant sources such as fruits, vegetables, and certain herbs, where it naturally occurs as part of the plant's secondary metabolites. It exhibits several biochemical actions, predominantly due to its antioxidant properties. This involves scavenging free radicals and chelating metal ions, which contribute to oxidative stress reduction. Additionally, it may influence various signaling pathways related to cell survival and inflammation.</p>Formula:C15H10O5Purity:Min. 95%Molecular weight:270.24 g/molAzicemicin B
CAS:<p>Azicemicin B exhibits mild antibacterial activity, and when administered to mice via intraperitoneal injection at a dosage of 150 mg/kg, it does not result in any acute toxicity.</p>Formula:C22H23NO9Color and Shape:SolidMolecular weight:445.419Calopogoniumisoflavone B
CAS:<p>Calopogoniumisoflavone B is a naturally occurring isoflavone, which is a type of phytochemical compound derived primarily from Calopogonium species. This product is isolated from the plant's roots and stems, where it functions as a secondary metabolite. Isoflavones are well known for their phytoestrogenic properties, meaning they can mimic or modulate the action of estrogen in the body by binding to estrogen receptors. This mode of action allows isoflavones to potentially influence various biological pathways related to hormone regulation and cellular growth.</p>Formula:C21H16O5Purity:Min. 95%Molecular weight:348.35 g/mol2'-Amino-3'-methoxyflavone, 99%
CAS:<p>A MAP kinase inhibitor</p>Formula:C16H13NO3Purity:99%Molecular weight:267.283,5,7-Trihydroxyflavone, 97%
CAS:<p>This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Sci</p>Formula:C15H10O5Purity:97%Color and Shape:Powder, White to cream to yellowMolecular weight:270.244',5,7-Trihydroxyflavone, 97%
CAS:<p>4',5,7-Trihydroxyflavone is a nonmutagenic flavonoid shown to inhibit cell proliferation, angiogenesis and protein kinase. Also induces apoptosis in breast cancer cells. It inhibit topoisomerase I-catalyzed DNA re-ligation and enhance gap junctional intercellular communication. This Thermo Scientif</p>Formula:C15H10O5Purity:97%Color and Shape:Cream to yellow to brown, PowderMolecular weight:270.24Ipriflavone
CAS:<p>Ipriflavone analytical standard provided with chromatographic purity, to be used as reference material for qualitative determination.</p>Formula:C18H16O3Purity:(HPLC) ≥90%Color and Shape:PowderMolecular weight:280.33Hispidulin
CAS:<p>Hispidulin analytical standard provided with w/w absolute assay, to be used for quantitative titration.</p>Formula:C16H12O6Purity:(HPLC) ≥98%Color and Shape:PowderMolecular weight:300.27Hispidulin-7-O-glucoside
CAS:<p>Hispidulin-7-O-glucoside analytical standard provided with w/w absolute assay, to be used for quantitative titration.</p>Formula:C22H22O11Purity:(HPLC) ≥98%Color and Shape:PowderMolecular weight:462.41Nepetin-7-O-glucoside
CAS:<p>Nepetin-7-O-glucoside analytical standard provided with w/w absolute assay, to be used for quantitative titration.</p>Formula:C22H22O12Purity:(HPLC) ≥98%Color and Shape:PowderMolecular weight:478.41



