The Role of 4-Methylpyridin-2-amine in Pharmaceutical Synthesis
The pharmaceutical industry is constantly seeking novel compounds and efficient synthesis pathways to develop life-saving medications. At the heart of many of these processes lie critical chemical intermediates, and 4-Methylpyridin-2-amine (CAS: 695-34-1) plays a significant role. As a versatile organic synthesis intermediate, this pyridine derivative is indispensable for researchers and manufacturers engaged in drug discovery and API (Active Pharmaceutical Ingredient) production. Understanding its properties and applications is key for those looking to buy high-quality pharmaceutical intermediates.
4-Methylpyridin-2-amine: A Crucial Building Block
With a molecular formula of C6H8N2 and CAS number 695-34-1, 4-Methylpyridin-2-amine is characterized by its pyridine ring structure with an amino group and a methyl substituent. This specific arrangement of functional groups makes it a highly reactive and versatile molecule for various chemical transformations. Its utility in pharmaceutical synthesis stems from its ability to act as a scaffold for building more complex molecular architectures, many of which exhibit significant biological activity. When considering price and availability, it’s important to note that the demand for such intermediates directly influences market dynamics.
Applications in Drug Discovery and Development
4-Methylpyridin-2-amine is frequently used in the synthesis of compounds that target specific biological pathways. For instance, its derivatives have shown potential as inhibitors of enzymes like NOS2 (iNOS), which are implicated in inflammatory responses. This makes it a valuable starting material for developing anti-inflammatory drugs or other therapeutic agents. Pharmaceutical research laboratories often procure this compound to explore new chemical entities (NCEs) and optimize lead compounds. As a reliable manufacturer, we ensure that the purity of our 4-Methylpyridin-2-amine meets the stringent requirements of pharmaceutical synthesis, often exceeding 98% assay.
Procurement from a Trusted Source
For pharmaceutical companies and contract research organizations (CROs), sourcing reliable intermediates is a strategic imperative. When you need to purchase 4-Methylpyridin-2-amine, choosing a reputable supplier is vital. A good supplier will provide comprehensive documentation, including certificates of analysis, to verify the compound's purity and identity. Furthermore, a competitive price from a direct manufacturer in China can significantly reduce production costs without compromising on quality. Many suppliers offer flexible packaging, from gram-scale for R&D to kilogram or ton-scale for commercial production, ensuring that your needs are met at every stage of development.
Why Choose a Dedicated Manufacturer?
Partnering with a dedicated manufacturer of 4-Methylpyridin-2-amine offers several advantages. Direct access to the source means better control over quality, faster response times for inquiries, and potentially lower costs. Experienced manufacturers understand the critical nature of these materials in the pharmaceutical supply chain and maintain robust quality management systems. Their ability to provide consistent quality and volume makes them an invaluable asset for pharmaceutical R&D and production.
Conclusion
4-Methylpyridin-2-amine is a cornerstone intermediate in modern pharmaceutical synthesis. Its unique chemical properties and diverse applications underscore its importance in the drug development pipeline. By diligently selecting a high-quality intermediate from a trusted manufacturer and supplier, pharmaceutical professionals can ensure the success and efficiency of their synthesis processes. We are committed to being your premier source for this essential chemical building block.
Perspectives & Insights
Core Pioneer 24
“4-Methylpyridin-2-amine: A Crucial Building Block With a molecular formula of C6H8N2 and CAS number 695-34-1, 4-Methylpyridin-2-amine is characterized by its pyridine ring structure with an amino group and a methyl substituent.”
Silicon Explorer X
“This specific arrangement of functional groups makes it a highly reactive and versatile molecule for various chemical transformations.”
Quantum Catalyst AI
“Its utility in pharmaceutical synthesis stems from its ability to act as a scaffold for building more complex molecular architectures, many of which exhibit significant biological activity.”