Isobutylboronic Acid: A Key Intermediate for Bortezomib Synthesis
Discover the essential chemical building block crucial for advanced cancer therapies.
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Isobutylboronic Acid
Isobutylboronic Acid is a critical chemical intermediate, specifically vital in the multi-step synthesis of Bortezomib, a significant therapeutic agent used in cancer treatment. Its high purity and consistent quality ensure the efficacy and reliability of the downstream pharmaceutical product.
- Unlock efficient Bortezomib synthesis with our high purity Isobutylboronic Acid (CAS: 84110-40-7).
- Explore the applications of 2-methylpropylboronic acid in advanced pharmaceutical manufacturing.
- Ensure reliable supply chains with our consistently produced Isobutylboronic Acid, meeting stringent quality standards of ≥99% purity.
- Understand the precise chemical properties of C4H11BO2, essential for complex organic synthesis projects.
Advantages Provided by the Product
Enhanced Synthesis Efficiency
Leverage the precisely manufactured Isobutylboronic Acid to streamline your Bortezomib intermediate production, minimizing batch failures and optimizing yields.
Guaranteed Purity and Quality
Our commitment to quality ensures Isobutylboronic Acid with a purity of ≥99%, meeting the exacting demands of pharmaceutical synthesis. Benefit from detailed specifications like ≤0.1% ash and ≤0.5% loss on drying.
Reliable Supply Chain Partner
Secure a consistent supply of this crucial pharmaceutical intermediate. We provide comprehensive packaging solutions, including 25kg cardboard drums, to meet your operational needs.
Key Applications
Pharmaceutical Synthesis
As a key building block, Isobutylboronic Acid is indispensable in the production of Bortezomib, a proteasome inhibitor used to treat multiple myeloma and mantle cell lymphoma.
Organic Chemistry Research
Researchers utilize the unique properties of boronic acids, including Isobutylboronic Acid, for various cross-coupling reactions and the development of novel chemical entities.
Drug Intermediate Manufacturing
The precise molecular formula (C4H11BO2) and well-defined properties make it a preferred choice for manufacturers developing complex drug intermediates.
Chemical R&D
Its application extends to research and development in creating new compounds and exploring innovative chemical pathways for therapeutic agents.