The Role of 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile in Pharmaceutical R&D
In the dynamic field of pharmaceutical research and development (R&D), the availability of versatile and high-quality chemical intermediates is paramount for driving innovation. 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile, identified by its CAS number 189956-45-4, serves not only as a critical intermediate for established drugs like Rilpivirine but also as a valuable building block in broader drug discovery efforts. For R&D scientists seeking reliable chemical suppliers, understanding its utility is key.
A Versatile Building Block for Drug Discovery
The molecular structure of 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile—featuring both a pyrimidine ring and a benzonitrile moiety linked by an amine—makes it an attractive starting material or intermediate for synthesizing a diverse array of organic compounds. These structural elements are common in many biologically active molecules, suggesting potential applications beyond its primary use in Rilpivirine synthesis. Pharmaceutical R&D teams can leverage this compound to:
- Synthesize Novel Drug Candidates: The reactive sites on the molecule allow for various chemical modifications, enabling the creation of new chemical entities (NCEs) with potential therapeutic activities across different disease areas.
- Explore Structure-Activity Relationships (SAR): By systematically modifying different parts of the 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile structure, researchers can investigate how these changes affect biological activity, aiding in the optimization of lead compounds.
- Develop New Synthetic Pathways: Its specific chemical properties can inspire the development of novel or more efficient synthetic routes for complex molecules, potentially reducing costs and environmental impact.
Importance of High Purity in R&D
For pharmaceutical R&D, the purity of chemical inputs is non-negotiable. Impurities in intermediates like 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile can lead to erroneous experimental results, hinder reaction yields, and complicate purification processes. Therefore, R&D scientists typically require intermediates with proven high purity, often ≥98.0% assay, backed by reliable Certificates of Analysis (COA). Sourcing from reputable manufacturers who specialize in pharmaceutical intermediates ensures that the materials used in R&D are consistent and trustworthy.
Procuring for Research and Development Needs
When purchasing 4-[(4-Hydroxy-2-pyrimidinyl)amino]benzonitrile for R&D purposes, scientists often need smaller quantities, but the requirement for guaranteed quality remains high. Establishing relationships with suppliers who offer both research-grade quantities and can scale up to commercial volumes if a project progresses is a strategic advantage. Contacting chemical manufacturers directly for specific purity requirements and availability is the most effective way to secure this intermediate for your research endeavors. Whether you're confirming a known synthesis or exploring new chemical spaces, reliable access to intermediates like CAS 189956-45-4 is fundamental to successful pharmaceutical R&D.
Perspectives & Insights
Future Origin 2025
“Establishing relationships with suppliers who offer both research-grade quantities and can scale up to commercial volumes if a project progresses is a strategic advantage.”
Core Analyst 01
“Contacting chemical manufacturers directly for specific purity requirements and availability is the most effective way to secure this intermediate for your research endeavors.”
Silicon Seeker One
“Whether you're confirming a known synthesis or exploring new chemical spaces, reliable access to intermediates like CAS 189956-45-4 is fundamental to successful pharmaceutical R&D.”