Unlock Antiviral Breakthroughs with High-Purity Imidazole Intermediates
Discover a critical component for advanced pharmaceutical synthesis and antiviral drug development.
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![1H-Imidazole, 5,5'-[1,1'-biphenyl]-4,4'-diylbis[2-(2S)-2-pyrrolidinyl-, hydrochloride (1:4)](https://www.nbinno.com/2025/webimg/gemini_688baa5f19881_1753983583.png)
1H-Imidazole, 5,5'-[1,1'-biphenyl]-4,4'-diylbis[2-(2S)-2-pyrrolidinyl-, hydrochloride (1:4)
This high-purity imidazole derivative, identified by CAS number 1009119-83-8, serves as a crucial building block in the synthesis of Daclatasvir, an important antiviral medication. Its precise chemical structure and consistent quality make it indispensable for researchers and manufacturers in the pharmaceutical industry seeking to develop and produce effective treatments for viral infections.
- Critical intermediate for Daclatasvir synthesis, contributing to the production of vital antiviral therapies.
- High purity ensures reliable outcomes in complex pharmaceutical synthesis, supporting the development of advanced drug candidates.
- Versatile research chemical for exploring new avenues in medicinal chemistry and drug discovery, facilitating the advancement of novel treatments.
- Sourced with confidence, providing a dependable supply chain for essential pharmaceutical raw materials.
Key Advantages for Your Research & Production
Enhanced Synthesis Efficiency
Leverage the power of reliable Daclatasvir intermediate synthesis with our meticulously produced compound, ensuring smoother production cycles and higher yields.
Accelerated Drug Discovery
Utilize this advanced pharmaceutical intermediate in your research to expedite the discovery and development of new therapeutic agents. Explore innovative drug candidates with confidence.
Guaranteed Purity and Quality
Benefit from a consistently pure product, vital for maintaining the integrity and efficacy of your downstream applications. Trust in CAS 1009119-83-8 chemical properties for dependable results.
Key Applications
Antiviral Drug Manufacturing
A cornerstone for the synthesis of Daclatasvir and other potential antiviral drugs, driving progress in treating hepatitis C and other viral infections.
Medicinal Chemistry Research
An essential building block for medicinal chemists exploring novel heterocyclic compounds and their therapeutic potential.
Process Development
Ideal for optimizing synthesis routes and scaling up production of complex pharmaceutical intermediates, ensuring efficient manufacturing.
Academic and Industrial R&D
A valuable reagent for academic institutions and industrial research labs focused on the development of new pharmaceutical compounds and chemical technologies.