CAS 142706-18-1
:1H-Benzimidazole,5-(difluoromethoxy)-2-[(R)-[(3,4-dimethoxy-2-pyridinyl)methyl]sulfinyl]-
Description:
1H-Benzimidazole, 5-(difluoromethoxy)-2-[(R)-[(3,4-dimethoxy-2-pyridinyl)methyl]sulfinyl]- is a complex organic compound characterized by its benzimidazole core, which is a bicyclic structure containing a fused benzene and imidazole ring. The presence of a difluoromethoxy group introduces significant polarity and potential for hydrogen bonding, influencing its solubility and reactivity. The sulfinyl group contributes to the compound's overall stability and may enhance its biological activity. The (R)-configuration indicates chirality, suggesting that the compound may exhibit specific interactions in biological systems, potentially affecting its pharmacological properties. Additionally, the presence of a dimethoxy-substituted pyridine moiety may enhance the compound's ability to interact with various biological targets, making it of interest in medicinal chemistry. Overall, this compound's unique structural features suggest potential applications in pharmaceuticals, particularly in the development of targeted therapies.
Formula:C16H15F2N3O4S
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Found 5 products.
(R)-Pantoprazole
CAS:Formula:C16H15F2N3O4SColor and Shape:White To Off-White SolidMolecular weight:383.38(R)-Pantoprazole-d6
CAS:Formula:C16H9D6F2N3O4SColor and Shape:White To Off-White SolidMolecular weight:389.41(R)-(+)-Pantoprazole-d7 Sodium Salt
CAS:Controlled ProductFormula:C16D8H6F2N3NaO4SColor and Shape:NeatMolecular weight:413.401(R)-(+)-Pantoprazole
CAS:<p>(R)-(+)-Pantoprazole is a proton pump inhibitor (PPI), which is derived from benzimidazole compounds. Its mode of action involves the selective and irreversible inhibition of the H+/K+ ATPase enzyme system, commonly known as the proton pump, located on the gastric parietal cells. By binding covalently to this enzyme, (R)-(+)-Pantoprazole effectively reduces gastric acid secretion, leading to an increase in gastric pH.</p>Formula:C16H15F2N3O4SPurity:Min. 95%Molecular weight:383.4 g/mol



