Exploring tert-Butyl (S)-3-(4-aminophenyl)piperidine-1-carboxylate: A Key Intermediate in Pharmaceutical Innovation
Unlocking advancements in cancer treatment with a vital building block for Niraparib.
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tert-Butyl (S)-3-(4-aminophenyl)piperidine-1-carboxylate
This compound is a pivotal chemical intermediate, essential for the synthesis of sophisticated pharmaceutical agents, most notably Niraparib, a crucial treatment in oncology. Its consistent quality and high purity (typically ≥99.0%) make it a reliable component in complex drug development pathways, supporting the creation of life-saving medications.
- As a key intermediate for Niraparib synthesis, this compound plays a vital role in the production of advanced cancer therapies, impacting patient outcomes.
- Ensuring high purity (≥99.0%) is critical for its application in pharmaceutical manufacturing, guaranteeing the efficacy and safety of the final drug product.
- The CAS number 1171197-20-8 identifies this specific and essential building block for researchers and manufacturers in the pharmaceutical sector.
- Sourcing pharmaceutical intermediates online from trusted suppliers ensures a stable supply chain for critical drug production.
Key Advantages
Critical Role in Niraparib Production
This intermediate is indispensable for the synthesis of Niraparib, a PARP inhibitor that has significantly advanced ovarian cancer treatment, demonstrating its direct contribution to medical breakthroughs.
High Purity and Consistency
With a purity of ≥99.0%, this fine chemical guarantees reliable performance in demanding pharmaceutical synthesis processes, minimizing batch variations and ensuring product integrity.
Global Manufacturing Hub
Leveraging China's robust chemical manufacturing capabilities for fine chemical synthesis ensures competitive pricing and availability for this essential pharmaceutical intermediate.
Key Applications
Pharmaceutical Intermediates
Essential for the synthesis of active pharmaceutical ingredients (APIs), supporting the development and production of a wide range of therapeutic drugs.
Oncology Drug Synthesis
Critically important as a building block for anti-cancer medications, contributing to the fight against various forms of cancer.
Advanced Organic Synthesis
Serves as a valuable reagent in complex organic chemistry, enabling the creation of intricate molecular structures for research and development.
Drug Development Research
A key compound for researchers exploring new therapeutic targets and synthesis pathways, facilitating innovation in medicinal chemistry.