High-Purity 5-Fluoro-3-Iodo-1H-Pyrazolo[3,4-b]Pyridine CAS 1350653-23-4
A critical building block for advanced pharmaceutical synthesis and drug development.
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5-Fluoro-3-Iodo-1H-Pyrazolo[3,4-b]Pyridine
This high-purity chemical compound serves as an essential intermediate for the synthesis of Vericiguat, a crucial pharmaceutical for treating heart failure. Its reliable supply and consistent quality make it a cornerstone for advancing drug discovery and manufacturing processes.
- Leverage our expertise in chemical synthesis intermediates to secure your supply chain.
- Discover the benefits of buying Vericiguat intermediate from trusted manufacturers for your R&D projects.
- Explore the applications of pharmaceutical intermediate chemicals in modern drug development.
- Ensure efficient high purity chemical intermediates are at the heart of your production.
Key Advantages Offered
Reliable Supply Chain
Ensuring a consistent and dependable source of this vital Vericiguat intermediate to support your ongoing pharmaceutical synthesis needs.
Exceptional Purity
Benefit from high purity chemical intermediates, crucial for achieving accurate results in drug discovery and API manufacturing.
Advanced Synthesis Applications
Utilize this compound as a building block in complex chemical synthesis, driving innovation in pharmaceutical research and development.
Key Applications
Pharmaceutical Synthesis
An indispensable component in the multi-step chemical synthesis pathways for active pharmaceutical ingredients (APIs), contributing to the production of life-saving medications.
Drug Discovery Research
Facilitating the exploration of new therapeutic compounds and mechanisms by serving as a versatile starting material or intermediate in medicinal chemistry research.
API Manufacturing
Playing a critical role in the industrial-scale production of Vericiguat, ensuring quality and efficiency in the pharmaceutical manufacturing sector.
Organic Chemistry Building Block
Its unique molecular structure makes it valuable for various organic synthesis reactions, expanding the possibilities in fine chemical applications.