Antimicrobianos
Los antimicrobianos son agentes que destruyen o inhiben el crecimiento de microorganismos, incluyendo bacterias, virus, hongos y parásitos. Estos compuestos son esenciales en la prevención y tratamiento de infecciones, desempeñando un papel crucial en la medicina, la agricultura y la industria alimentaria. En CymitQuimica, ofrecemos una extensa gama de antimicrobianos de alta calidad y pureza, adecuados para diversas aplicaciones científicas e industriales. Nuestro catálogo incluye antibióticos, antifúngicos, antivirales y desinfectantes, todos diseñados para satisfacer las necesidades de investigación y desarrollo, así como para aplicaciones clínicas y de producción. Con nuestros productos, los profesionales pueden garantizar la eficacia y seguridad en el control de infecciones y en la protección de la salud pública.
Subcategorías de "Antimicrobianos"
- Antibióticos(4.129 productos)
- Antifúngicos(887 productos)
- Antiparasitarios(701 productos)
- Antivirales(764 productos)
Se han encontrado 2423 productos de "Antimicrobianos"
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Hexazinone metabolite D
CAS:<p>Hexazinone metabolite D is a derivative compound that results from the biotransformation of Hexazinone, which is a systemic herbicide. This metabolite originates from the breakdown processes mediated by biological or environmental factors in ecosystems where Hexazinone is applied. Its mode of action involves the inhibition of photosynthesis by targeting photosystem II, ultimately reducing the transfer of electrons, which leads to the disruption of energy production in susceptible plant species.</p>Fórmula:C10H15N3O3Pureza:Min. 95%Peso molecular:225.24 g/molOxohongdenafil
CAS:<p>Please enquire for more information about Oxohongdenafil including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Fórmula:C25H32N6O4Pureza:Min. 95%Peso molecular:480.6 g/molLysostaphin, from staphylococcus staphylolyticus
CAS:<p>Lysostaphin, from Staphylococcus staphylolyticus is a zinc metalloenzyme with action on bacterial cell walls by cleaving polyglycine cross-links and is used for treating staphylococcal infections and in research applications.</p>Pureza:Min. 95%Forma y color:PowderMtbHU-IN-1
CAS:<p>MtbHU-IN-1 is a small-molecule inhibitor designed specifically for targeting the HU protein in Mycobacterium tuberculosis. This compound is derived through rational drug design and computational modeling efforts, exploiting the vulnerabilities of the bacterial DNA-binding proteins. Its mode of action involves binding to the HU protein, inhibiting its function, which is crucial for DNA structuring and stability within the bacterial cell. By disrupting HU protein function, MtbHU-IN-1 impairs bacterial chromosomal architecture, leading to an inability to replicate and ultimately cell death.</p>Fórmula:C44H36N4O12S2Pureza:Min. 95%Peso molecular:876.9 g/mol2-Amino-5-(4-hydroxy-3,5-dimethoxybenzyl)pyrimidin-4-ol
CAS:<p>2-Amino-5-(4-hydroxy-3,5-dimethoxybenzyl)pyrimidin-4-ol is a synthetic pyrimidine derivative, which is meticulously engineered through organic synthesis pathways. This compound emerges from a tailored chemical reaction involving the strategic manipulation of a pyrimidine core to incorporate specific functional groups. The unique structural configuration of this molecule allows it to interact with biological macromolecules, primarily through hydrogen bonding and pi-pi interactions, potentially influencing biochemical pathways.</p>Fórmula:C13H15N3O4Pureza:Min. 95%Peso molecular:277.28 g/molBacitracin A
CAS:<p>Bacitracin A is an antibiotic peptide, which is isolated from the bacterium Bacillus subtilis. It functions by interfering with the cell wall synthesis of bacteria. Specifically, Bacitracin A inhibits the dephosphorylation of the C55-isoprenyl pyrophosphate molecule, an essential lipid carrier that transports peptidoglycan building blocks to the growing cell wall. This disruption leads to the inhibition of peptidoglycan synthesis, a critical component of bacterial cell walls, resulting in cell lysis and death.</p>Fórmula:C66H103N17O16SPureza:Min. 95%Peso molecular:1,422.7 g/molLeptomycin A
CAS:<p>Leptomycin A is a Streptomyces-produced inhibitor, which is derived from the bacterium Streptomyces spiroverticillatus. It functions by specifically binding to and inhibiting the CRM1 (exportin 1), a nuclear export receptor. This action blocks the nuclear export of proteins that contain a leucine-rich nuclear export signal (NES), thereby leading to their accumulation within the nucleus. The inhibition of CRM1 disrupts various cellular processes, including cell cycle regulation and signal transduction pathways.</p>Fórmula:C32H46O6Pureza:Min. 95%Peso molecular:526.7 g/molMCB-3681
CAS:<p>MCB-3681 is a small-molecule inhibitor, which is synthesized through advanced chemical processes. It operates at a molecular level by selectively targeting and inhibiting specific cellular pathways involved in cancer cell proliferation. The compound's action is characterized by its ability to interfere with enzyme activity crucial for the survival and growth of malignant cells, thus inducing apoptosis and inhibiting tumor progression.</p>Fórmula:C31H32F2N4O8Pureza:Min. 95%Peso molecular:626.6 g/molAtisinium chloride
CAS:<p>Atisinium chloride is an organometallic compound, which is synthesized through advanced coordination chemistry techniques. The source of this compound lies in the strategic combination of organic ligands with metal centers, facilitating unique interactions that are pivotal to its functionality. The mode of action primarily involves the ability to participate in complex catalytic cycles, engaging in electron transfer processes that are essential for mediating chemical transformations.<br><br>This compound finds applications in specialized fields such as catalysis, where it is utilized to promote and drive reactions that may be inefficient under normal conditions. Its effectiveness in altering reaction pathways and increasing selectivity makes it valuable in synthetic chemistry and industrial processes. Additionally, atisinium chloride's unique properties might be leveraged in materials science for the development of novel materials with tailored functionalities. The intricate balance of its reactive properties and stability under varying conditions makes it a subject of ongoing research for further applications.</p>Fórmula:C22H34ClNO2Pureza:Min. 95%Peso molecular:379.96 g/molEnt-avibactam sodium
CAS:Ent-avibactam sodium is a pharmacological agent, categorized as a beta-lactamase inhibitor, which is synthetically derived. This compound acts by binding to and inhibiting the action of beta-lactamase enzymes produced by certain bacteria, thereby preventing the breakdown of beta-lactam antibiotics. Consequently, it restores the effectiveness of these antibiotics against resistant strains.Fórmula:C7H10N3NaO6SPureza:Min. 95%Peso molecular:287.23 g/molMetolachlor mercapturate
CAS:<p>Metolachlor mercapturate is a metabolite of the herbicide Metolachlor, which is derived from the degradation of the primary active ingredient found in various agricultural herbicide formulations. It is formed through biotransformation processes in plants, soil, and water, where the parent compound undergoes enzymatic reactions leading to its metabolic products. The primary mode of action involves the inhibition of elongase enzymes, which are crucial for the synthesis of fatty acids in plants, thus preventing cell division and impacting weed growth effectively.</p>Fórmula:C20H30N2O5SPureza:Min. 95%Peso molecular:410.5 g/molCefetrizole
CAS:<p>Please enquire for more information about Cefetrizole including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Fórmula:C16H15N5O4S3Pureza:Min. 95%Peso molecular:437.5 g/molLenacapavir
CAS:<p>Lenacapavir is a capsid inhibitor with a mode of action that interferes with the HIV capsid protein, disrupting multiple stages of the viral lifecycle. It is used for treating multidrug-resistant HIV infections.</p>Fórmula:C39H32ClF10N7O5S2Pureza:Min. 95%Forma y color:PowderPeso molecular:968.28 g/molThiosildenafil-despiperazine
CAS:<p>Thiosildenafil-despiperazine is a derivative of sildenafil, which is a phosphodiesterase type 5 (PDE5) inhibitor. This compound is synthesized through structural modifications of sildenafil, leading to alterations in its pharmacological profile and potential applications. The source of this derivative involves chemical synthesis techniques to modify the core structure of sildenafil, specifically targeting modifications in the piperazine ring and replacing it with a thioside group to enhance or alter desired effects.</p>Fórmula:C17H20N4O4S2Pureza:Min. 95%Peso molecular:408.5 g/molGentamicin B sulfate
CAS:<p>Gentamicin B sulfate is an aminoglycoside antibiotic, which is produced through the fermentation process involving the actinomycete Micromonospora purpurea. This antibiotic functions primarily by binding to the 30S ribosomal subunit of bacteria, thereby inhibiting protein synthesis. This action disrupts the initiation of protein chain formation, ultimately leading to bacterial cell death. Gentamicin B sulfate is particularly effective against a variety of Gram-negative bacteria and some Gram-positive strains.</p>Fórmula:C19H40N4O14SPureza:Min. 95%Peso molecular:580.60 g/molSPR741
CAS:<p>SPR741 is an antimicrobial potentiator, which is derived from polymyxin B, an antibiotic sourced from the bacterium *Bacillus polymyxa*. Its mode of action involves permeabilizing the outer membrane of Gram-negative bacteria, allowing otherwise impermeable antibiotics to enter the bacterial cell. This potentiation effect significantly enhances the efficacy of co-administered antibiotics against resistant strains.</p>Fórmula:C44H73N13O13Pureza:Min. 95%Peso molecular:992.1 g/molPicarbutrazox
CAS:<p>Picarbutrazox is a fungicide, which is a product derived from chemical synthesis designed to protect crops by inhibiting fungal growth. It works through a specific mode of action that targets and disrupts the biosynthesis of essential lipids within fungal cells. This disruption ultimately leads to the cessation of cell membrane formation, impeding the growth and proliferation of the fungi.</p>Fórmula:C20H23N7O3Pureza:Min. 95%Peso molecular:409.4 g/molErythromycin propionate
CAS:<p>Erythromycin propionate is an antibiotic, which is derived from the bacterium *Saccharopolyspora erythraea*. This compound functions by inhibiting protein synthesis in susceptible bacteria, specifically targeting the 50S ribosomal subunit. Erythromycin propionate achieves this by binding to the ribosomal RNA, thereby preventing the translocation step of protein elongation.</p>Fórmula:C40H71NO14Pureza:Min. 95%Peso molecular:790 g/mol6-(2-Chlorophenoxy)-5-fluoro-4(3H)-pyrimidinone
CAS:<p>6-(2-Chlorophenoxy)-5-fluoro-4(3H)-pyrimidinone is a heterocyclic compound, which is a synthetic derivative developed for biochemical research. This compound is synthesized through a series of organic reactions, involving halogenation and cyclization techniques, typically conducted in a controlled laboratory setting. Its design incorporates specific structural features, such as the chlorophenoxy and fluoro groups, which are strategically positioned to enhance its binding affinity and specificity.</p>Fórmula:C10H6ClFN2O2Pureza:Min. 95%Peso molecular:240.62 g/molFenamiphos-sulfoxide d3 (S-methyl d3)
CAS:<p>Fenamiphos-sulfoxide d3 (S-methyl d3) is a deuterated, labeled pesticide intermediate, which is often utilized in advanced laboratory settings for precise analytical studies. This compound is synthesized as a stable isotope-labeled analog, enabling researchers to conduct sophisticated mass spectrometric analyses. Its mode of action involves serving as a reference or tracer in studies concerning the metabolism and degradation of fenamiphos, a well-known organophosphate pesticide.</p>Fórmula:C13H22NO4PSPureza:Min. 95%Peso molecular:322.38 g/mol
