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Ligas Organometálicas

Ligas Organometálicas

Nesta categoria, você encontrará um grande número de moléculas organometálicas usadas como ligantes em biomoléculas. Esses ligantes organometálicos podem ser usados em química orgânica e síntese no laboratório. Eles desempenham um papel crucial na formação de complexos de coordenação e na catálise de várias reações químicas. Na CymitQuimica, oferecemos uma seleção diversificada de ligantes organometálicos de alta qualidade para apoiar suas pesquisas e necessidades industriais.

Subcategorias de "Ligas Organometálicas"

Foram encontrados 2887 produtos de "Ligas Organometálicas"

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  • SAG 21k

    CAS:
    <p>SAG 21k is a synthetic ion channel, which is a laboratory-created entity designed to mimic the functionality of natural ion channels found in biological membranes. These synthetic constructs are engineered through chemical synthesis, allowing precise control over their structural and functional properties. The mode of action of SAG 21k involves the facilitation of ion transport across lipid bilayers, thereby enabling the study of transmembrane ion flow in controlled environments.</p>
    Fórmula:C29H28ClF2N3O2S
    Pureza:Min. 95%
    Peso molecular:556.1 g/mol

    Ref: 3D-WMB00248

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  • Jaspamycin

    CAS:
    <p>Jaspamycin is an antitumor antibiotic, which is a natural product isolated from the bacterium *Streptomyces hygroscopicus*. Its mode of action involves disrupting RNA synthesis by inhibiting nucleic acid chain elongation, thereby impeding cell proliferation and leading to cell death in rapidly dividing cancer cells. This mechanism makes Jaspamycin particularly effective as a chemotherapeutic agent.</p>
    Fórmula:C12H12N4O5
    Pureza:Min. 95%
    Peso molecular:292.25 g/mol

    Ref: 3D-XAA24296

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  • Cathepsin Inhibitor 1

    CAS:
    <p>Cathepsin Inhibitor 1 is a selective chemical inhibitor specifically targeting cathepsin enzymes, which is derived through synthetic processes. Cathepsins are proteolytic enzymes predominantly found in lysosomes and play a crucial role in intracellular protein degradation. By inhibiting these enzymes, Cathepsin Inhibitor 1 effectively prevents the breakdown of protein substrates, thus allowing for the regulation of various cellular processes such as apoptosis, antigen presentation, and tissue remodeling.</p>
    Fórmula:C20H24ClN5O2
    Pureza:Min. 95%
    Peso molecular:401.89 g/mol

    Ref: 3D-AJA12065

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  • CYM 5541

    CAS:
    <p>CYM 5541 is a selective herbicide, which is synthesized from organic chemical compounds. It functions by interfering with the metabolic processes critical to weed growth and development. Specifically, CYM 5541 targets and inhibits specific enzymes that are essential for cell division and photosynthesis in undesirable plants.<br><br>The primary application of CYM 5541 is in agricultural settings, where it is used to manage weed populations that compete with crops for light, nutrients, and water. It is particularly effective in controlling broadleaf and grassy weeds. Through its precise mode of action, CYM 5541 enables efficient, targeted suppression of non-crop vegetation, thereby maintaining the health and yield of the desired plants. Its use in integrated pest management strategies underscores its role in sustainable farming practices, minimizing the environmental impact while maximizing agricultural productivity.</p>
    Fórmula:C19H28N2O2
    Pureza:Min. 95%
    Peso molecular:316.44 g/mol

    Ref: 3D-VMB12826

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  • Mots-C

    CAS:
    <p>Mots-C is a mitochondrial-derived peptide, which is encoded by the small open reading frame found within the mitochondrial 12S rRNA. This peptide functions by interacting with the cellular metabolic pathways to enhance mitochondrial bioenergetics and overall cellular metabolism. Mechanistically, Mots-C modulates the folate–methionine cycle, directly impacting glucose regulation and energy utilization, and consequently facilitating cellular adaptation to metabolic stress.</p>
    Fórmula:C101H152N28O22S2
    Pureza:Min. 95%
    Peso molecular:2,174.6 g/mol

    Ref: 3D-CQC58064

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  • 5-Hydroxymatrine

    CAS:
    <p>5-Hydroxymatrine is an alkaloid compound, which is derived from the roots of Sophora plants, notably Sophora flavescens. This compound is characterized by its structure as a quinolizidine alkaloid and is a modified form of matrine, with a hydroxyl group adding to its chemical complexity.</p>
    Fórmula:C15H24N2O2
    Pureza:Min. 95%
    Peso molecular:264.36 g/mol

    Ref: 3D-DAA41137

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  • SR8278

    CAS:
    <p>SR8278 is a synthetic, chemical compound that functions as a highly selective inverse agonist of the Rev-Erb nuclear receptors, which is derived from extensive biochemical research. It operates by binding to these orphan nuclear receptors, Rev-Erbα and Rev-Erbβ, inhibiting their activity. This antagonistic action disrupts the regulation of circadian rhythms, metabolism, and inflammatory responses that these receptors typically control. This modulation occurs at the transcriptional level, where SR8278 interferes with gene expression governed by Rev-Erb receptors.</p>
    Fórmula:C18H19NO3S2
    Pureza:Min. 95%
    Peso molecular:361.48 g/mol

    Ref: 3D-EAC94466

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