The Role of Nintedanib (CAS 656247-17-5) in Drug Discovery
The landscape of drug discovery is constantly evolving, with small molecule inhibitors playing a pivotal role in targeting specific disease mechanisms. Nintedanib, identified by CAS number 656247-17-5, is a prime example of such a compound, widely recognized for its efficacy as a potent triple angiokinase inhibitor. Its ability to block VEGFR, PDGFR, and FGFR pathways makes it an invaluable tool for researchers and pharmaceutical developers working on treatments for various cancers and fibrotic diseases.
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The scientific significance of Nintedanib in drug discovery is substantial. Its mechanism of action targets the signaling pathways that drive tumor angiogenesis and fibrosis. By inhibiting VEGFR, it effectively limits the supply of nutrients and oxygen to tumors, thereby hindering their growth and spread. Simultaneously, its action on PDGFR and FGFR is crucial in mitigating the excessive tissue remodeling seen in fibrotic conditions, such as idiopathic pulmonary fibrosis. This comprehensive inhibitory profile makes it a compound of significant interest for therapeutic development.
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Nintedanib free base, typically appearing as a yellow solid powder with the molecular formula C31H33N5O4, is a key component in many preclinical studies. The meticulous detail in its chemical structure and properties, coupled with our commitment to purity, makes us an ideal partner for drug discovery programs. Our accessible supply chain and responsive customer support ensure that researchers can obtain the materials they need efficiently.
In conclusion, Nintedanib (CAS 656247-17-5) plays a crucial role in modern drug discovery due to its potent angiokinase inhibitory properties. As a trusted manufacturer and supplier, we are committed to providing high-quality Nintedanib free base to support your critical research. We invite you to contact us for a quote and to learn more about how our reliable supply can benefit your drug discovery initiatives.
Perspectives & Insights
Core Pioneer 24
“Its mechanism of action targets the signaling pathways that drive tumor angiogenesis and fibrosis.”
Silicon Explorer X
“By inhibiting VEGFR, it effectively limits the supply of nutrients and oxygen to tumors, thereby hindering their growth and spread.”
Quantum Catalyst AI
“Simultaneously, its action on PDGFR and FGFR is crucial in mitigating the excessive tissue remodeling seen in fibrotic conditions, such as idiopathic pulmonary fibrosis.”