High Purity (2S)-2-(8-Amino-1-Bromoimidazo[1,5-a]Pyrazin-3-yl)-1-Pyrrolidinecarboxylate: A Key Intermediate for Advanced Pharmaceutical Synthesis
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(2S)-2-(8-Amino-1-Bromoimidazo[1,5-a]Pyrazin-3-yl)-1-Pyrrolidinecarboxylate
This high-purity compound is a vital pharmaceutical intermediate, essential for the synthesis of Acalabrutinib, a groundbreaking treatment for various B-cell malignancies. Its precise molecular structure and stringent quality control ensure its effectiveness in complex organic synthesis pathways.
- Leveraging advanced synthesis techniques, we provide a pharmaceutical intermediate with purity exceeding 98%, crucial for acalabrutinib intermediate synthesis.
- Our commitment to quality is reinforced by GMP, ISO 9001, and FDA certifications, ensuring reliable pharmaceutical intermediate supply.
- Discover the benefits of our custom synthesis pharmaceutical intermediates, tailored to meet your specific project needs and timelines.
- This critical building block, known as CAS 1420478-88-1, plays a pivotal role in the production of advanced cancer therapies.
Advantages You Gain
Uncompromising Purity
Achieve superior results in your drug development with our intermediate, offering >98% or 99% purity for demanding pharmaceutical applications.
Critical Synthesis Role
As a key component in acalabrutinib intermediate synthesis, this compound significantly contributes to the efficacy of targeted cancer treatments.
Reliable Global Supply
Benefit from a stable and dependable supply chain for your pharmaceutical needs, supported by experienced manufacturers and rigorous quality control.
Key Applications
Pharmaceutical Synthesis
Utilized extensively as a high-purity intermediate in the synthesis of complex Active Pharmaceutical Ingredients (APIs), particularly for oncology drugs.
Acalabrutinib Production
This compound is indispensable for the industrial-scale production of Acalabrutinib, a crucial Bruton's tyrosine kinase (BTK) inhibitor.
Targeted Cancer Therapies
Plays a vital role in the development of targeted cancer therapies, addressing B-cell malignancies like CLL, SLL, and MCL.
Custom Organic Synthesis
Serves as a valuable building block in custom organic synthesis projects requiring intricate molecular structures and high precision.