7-(3-Chloropropoxy)-4-hydroxy-6-methoxyquinoline-3-carbonitrile: A Key Pharmaceutical Intermediate
Discover the critical role of this quinolinecarbonitrile derivative in the synthesis of advanced cancer therapies and its significance as a pharmaceutical intermediate.
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7-(3-Chloropropoxy)-4-hydroxy-6-methoxyquinoline-3-carbonitrile
As a leading supplier in China, we provide high-quality 7-(3-Chloropropoxy)-4-hydroxy-6-methoxyquinoline-3-carbonitrile, a vital building block for pharmaceutical synthesis. This compound is instrumental in the production of Bosutinib, a crucial medication for treating chronic myeloid leukemia. Our commitment as a manufacturer in China ensures the reliability and purity required for advanced pharmaceutical applications, supporting the development of life-saving treatments.
- The synthesis of Bosutinib relies heavily on this specific quinolinecarbonitrile derivative, making it a cornerstone in oncology drug development.
- Understanding the precise CAS 214470-66-3 is essential for sourcing and quality assurance in the pharmaceutical supply chain.
- As a dedicated manufacturer in China, we focus on delivering intermediates with high purity, ensuring seamless integration into complex drug synthesis processes.
- The applications of this pharmaceutical intermediate extend to advanced drug development, highlighting its importance in the medical field.
Advantages Offered
High Purity and Quality
Ensuring a purity of ≥98.0%, this pharmaceutical intermediate guarantees consistent results in the complex synthesis of Bosutinib.
Key Role in Bosutinib Production
This compound is an indispensable component in the multi-step process of creating the active pharmaceutical ingredient (API) for Bosutinib, a critical cancer therapy.
Reliable Pharmaceutical Intermediate Supply
As a reputable manufacturer in China, we provide a stable and dependable supply chain for essential pharmaceutical intermediates like this quinolinecarbonitrile derivative.
Key Applications
Oncology Drug Synthesis
This chemical intermediate is primarily used in the synthesis of Bosutinib, a tyrosine kinase inhibitor for treating specific types of leukemia.
Pharmaceutical Research and Development
Its unique structure makes it valuable for research into new quinoline-based compounds and drug discovery initiatives.
API Manufacturing
Serves as a crucial precursor in the industrial-scale production of Active Pharmaceutical Ingredients (APIs), ensuring drug efficacy and safety.
Fine Chemical Synthesis
Beyond pharmaceuticals, its properties may lend themselves to other specialized fine chemical applications requiring precise molecular structures.