Understanding Quinolone Intermediates: A Chemist's Guide
The field of medicinal chemistry is deeply reliant on a diverse array of chemical building blocks, among which quinolone derivatives hold significant importance. These heterocyclic compounds form the core structure of many potent pharmaceuticals. A prime example is 6-Hydroxy-3,4-dihydroquinolin-2(1H)-one (CAS: 54197-66-9), a vital intermediate extensively used in the synthesis of drugs like Cilostazol. For chemists and formulators, a thorough understanding of such intermediates is key to successful drug development.
Chemically, 6-Hydroxy-3,4-dihydroquinolin-2(1H)-one is characterized by its quinoline ring system, featuring a hydroxyl group and a lactam moiety. Its typical appearance is that of a light yellow crystal, with a melting point in the range of 236-240°C. This specific structure imparts unique reactivity and properties, making it an excellent precursor for further chemical modifications. The ability to reliably procure this compound with high purity (often exceeding 97%) from reputable manufacturers is crucial for chemists aiming for reproducible and efficient synthetic routes.
The primary application of this quinolone intermediate is in the pharmaceutical industry, serving as a key component in the synthesis of Cilostazol, which is primarily prescribed for intermittent claudication. Beyond this established use, its versatile structure opens avenues for research into other therapeutic areas, including potential applications in neurological disorders and as an antioxidant. As a supplier, we facilitate this research by providing high-quality material, allowing scientists to focus on discovery rather than sourcing challenges. Enquiries from R&D departments for this intermediate are a common and welcomed part of our business.
For procurement professionals and research scientists looking to buy this vital chemical, considering the advantages of working with a dedicated manufacturer is essential. Factors such as price, availability, and adherence to quality standards are paramount. By partnering with a supplier that can guarantee consistent quality and dependable delivery, organizations can streamline their R&D and manufacturing processes. We encourage you to inquire about our bulk purchase options and request a quote to secure your supply of this critical organic synthesis component.
In summary, 6-Hydroxy-3,4-dihydroquinolin-2(1H)-one represents a class of essential quinolone intermediates that are fundamental to modern pharmaceutical innovation. Its chemical properties and established applications underscore its importance. We are committed to serving as a reliable source for this compound, supporting the scientific community in their pursuit of new and improved therapeutic solutions. Reach out to us to discuss your specific requirements for this or other chemical intermediates.
Perspectives & Insights
Bio Analyst 88
“The ability to reliably procure this compound with high purity (often exceeding 97%) from reputable manufacturers is crucial for chemists aiming for reproducible and efficient synthetic routes.”
Nano Seeker Pro
“The primary application of this quinolone intermediate is in the pharmaceutical industry, serving as a key component in the synthesis of Cilostazol, which is primarily prescribed for intermittent claudication.”
Data Reader 7
“Beyond this established use, its versatile structure opens avenues for research into other therapeutic areas, including potential applications in neurological disorders and as an antioxidant.”