Basic Chemical Information
| Aspect | Details |
| Product Name | Glycopyrrolate |
| CAS Number | 596-51-0 |
| Purity | 99% |
Molecular Weight | 398.33 |
Appearance | White to off-white fine crystalline powder |
| Function | mechanisms relevant to COPD, asthma and peptic ulcer |
Product Introduction
Glycopyrrolate (Chinese name: Glycopyrronium Bromide, aliases: Glycopyrrolate Bromide) is a structurally stable quaternary ammonium anticholinergic small-molecule compound, serving as a dedicated research tool substrate for the study of muscarinic cholinergic receptor (M-receptor) targeted antagonism mechanisms. It features stable quaternary ammonium polarity and regular molecular skeleton with uniform purity and extremely low impurity content. The material presents high crystallinity and pure loose texture without agglomeration or variegated foreign matter under normal conditions. It maintains stable physicochemical properties at room temperature and pressure, resists mild oxidation and moisture deterioration, and retains complete molecular structure and specific receptor antagonistic activity for a long time under dark and dry storage with excellent experimental repeatability.
Application Scope
Cholinergic Receptor Antagonism Mechanism Research: As a classic high-selectivity M-receptor antagonist tool compound, it is stably applied to in vitro receptor binding affinity detection, cholinergic signaling pathway blocking experiments and receptor subtype function verification. Featuring strong molecular target specificity and no obvious non-specific binding, it serves as a core experimental material for basic anticholinergic pharmacological research.
Neural and Smooth Muscle Physiological Regulation Research: It is used for in vitro smooth muscle cell contraction regulation experiments, choline-mediated nerve-muscle signal transduction mechanism analysis and autonomic nerve function simulation research, suitable for cell-level pharmacological intervention and physiological mechanism analysis with stable experimental gradient response and high data repeatability.
Gland Secretion and Stress Pharmacology Research: Based on its stable anticholinergic activity, it is applied to in vitro gland cell secretion function regulation and acetylcholine-mediated stress response mechanism research, suitable for basic in vitro research on neurohumoral regulation, secretion pharmacology and auxiliary anti-inflammatory mechanisms.
Academic Experiment Reproduction & System Control: Its physicochemical parameters, water solubility and biological activity fully conform to international standard research materials, enabling accurate reproduction of published in vitro cell intervention experiments, receptor function blocking experiments and pharmacological activity gradient verification experiments for academic research deepening, pharmacological experimental system calibration and research data verification.
Organic Synthesis & Drug Intermediate Derivation R&D: With multiple active structures including ester groups, hydroxyl groups and quaternary ammonium salts, it features strong molecular plasticity. As a lead intermediate for structural modification of anticholinergic drugs, it supports small-molecule drug group modification, structure-activity relationship analysis and novel antagonist derivative screening research.
Important Disclaimer
This product is a quaternary ammonium salt anticholinergic organic 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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