Basic Chemical Information
| Aspect | Details |
| Product Name | Camostat Mesylate |
| CAS Number | 59721-29-8 |
| Purity | 99% |
Molecular Weight | 494.52 |
Appearance | White to off-white fine crystalline powder |
Product Introduction
Camostat Mesylate (common name: Camostat Mesilate, aliases FOY-305, FOY-S980) is a structurally stable benzoylguanidine derivative methanesulfonate small-molecule compound, serving as a dedicated research substrate for serine protease targeted research. It features a regular molecular skeleton and excellent salt structure stability with balanced polarity distribution, possessing core characteristics of good water solubility, specific target action and strong degradation resistance. The material presents pure and loose texture under normal conditions without structural defects. It is not prone to oxidation or discoloration at room temperature with wide temperature and humidity tolerance, maintaining complete molecular structure and inherent biological activity during long-term storage.
Application Scope
Serine Protease Inhibition Mechanism Research: As a broad-spectrum reversible serine protease inhibitor, it accurately targets trypsin, thrombin, plasmin and other proteases. It is stably applied to in vitro enzyme activity inhibition assays, target affinity analysis and enzyme kinetic parameter determination, featuring high action specificity and stable inhibitory effect, serving as a core tool compound for basic protease pharmacological research.
Inflammation and Immune Regulation Mechanism Research:It regulates protease-mediated inflammatory pathways to affect inflammatory factor release and immune cell activation, suitable for in vitro inflammatory cell model construction, inflammatory signaling pathway analysis and immune homeostasis regulation research, widely applied in basic anti-inflammatory pharmacological and immune mechanism studies.
Tissue Fibrosis Mechanism Research:Based on its stable protease regulatory activity, it is used to explore the mechanism of in vitro fibrotic cell models and verify the correlation between abnormal protease activation and fibrotic lesions, suitable for in vitro simulation and mechanism analysis of pathological mechanisms such as liver and renal fibrosis.
Academic Experiment Reproduction & System Control:Its physicochemical properties are fully consistent with international standard research materials with stable water solubility and biological activity parameters, enabling accurate reproduction of published in vitro enzyme activity experiments, cell function tests and target inhibition gradient assays for academic research deepening, experimental system calibration and research data verification.
Organic Synthesis & Structural Derivation R&D: With multiple active functional groups including guanidino, phenyl ester and amide groups, it features strong structural plasticity of salt compounds. As a core synthetic intermediate, it supports structural modification, group decoration, lead compound screening and structure-activity relationship research for new protease inhibitory small-molecule derivatives.
Important Disclaimer
This product is an organic chemical intermediate for pure scientific research, only used as laboratory chemical material. It is not drug, veterinary drug, health product, food or cosmetic raw material with no medical, commercial or civilian value and no therapeutic or health-care effects. Purchasers confirm the purpose of formal laboratory scientific research and promise not to change the use. All risks and legal liabilities arising from illegal misappropriation and abuse shall be borne independently by purchasers.
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