2-Chloro-4-(piperidin-1-ylmethyl)pyridine Oxalate: A Key Pharmaceutical Intermediate for Lafutidine Synthesis

Discover the essential role of 2-Chloro-4-(piperidin-1-ylmethyl)pyridine oxalate (CAS: 406484-56-8) as a critical pharmaceutical intermediate. As a leading manufacturer and supplier in China, we provide high-purity compounds vital for advanced drug discovery and development, particularly for gastrointestinal therapies. Partner with us for reliable supply and exceptional quality.

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Superior Chemical Properties for Enhanced Synthesis

Optimized Synthesis Route

Our detailed understanding of the synthesis pathway, including chlorination and Mannich reactions, allows us to produce high-yield and high-purity intermediates. We continuously optimize our processes to meet the stringent demands of the pharmaceutical industry, ensuring you receive top-quality materials from our China manufacturing facility.

Key Biological Activity Insights

The compound's structure, featuring a pyridine ring and piperidine moiety, grants it significant biological relevance, including potential serotonin (5-HT₃) receptor antagonism and histamine H₂ receptor binding. These properties are crucial for drug discovery and demonstrate our commitment to providing intermediates with well-understood functionalities.

Industrial Scalability and Stability

Produced to stringent industrial standards, our 2-Chloro-4-(piperidin-1-ylmethyl)pyridine oxalate is stable under inert conditions and suitable for large-scale applications. We ensure consistent quality for global suppliers and buyers seeking intermediates for synthesis.

Versatile Applications in Pharmaceutical and Beyond

Pharmaceutical Synthesis

Serve as a crucial intermediate in the synthesis of Lafutidine, a gastroprotective agent. Discover its utility in developing novel therapeutic agents for a range of conditions, ensuring high standards for your pharmaceutical supply chain.

Drug Discovery & Research

Essential for medicinal chemistry research, this compound aids in exploring new drug candidates. Its interaction studies with biological targets are vital for understanding pharmacological properties, providing valuable insights for R&D departments.

Material Science Innovations

The unique crystalline structure of the oxalate salt makes it a subject of study for nonlinear optical (NLO) properties, indicating its potential application in laser technology and other advanced materials.

Agrochemical Development

Derivatives of this compound have shown herbicidal activity, suggesting its broader potential in developing new agrochemical solutions. We support innovation across chemical sectors.