Understanding the Synthesis and Application of 11-alpha-Hydroxycarvenone
The world of fine chemicals and pharmaceutical intermediates is intricate, with each compound serving a specific, often vital, purpose. 11-alpha-Hydroxycarvenone, bearing the CAS number 192569-17-8, is a prime example of such a compound. Its primary recognition comes from its indispensable role as a precursor in the synthesis of Eplerenone, a medication widely prescribed for managing hypertension and heart failure.
The synthesis of 11-alpha-Hydroxycarvenone involves carefully controlled chemical reactions that yield a compound with a precise molecular structure (C22H28O4) and a characteristic yellow crystalline solid appearance. The journey to produce this intermediate often involves biotransformation processes, as noted in some literature, highlighting the sophisticated techniques employed in modern chemical manufacturing. For NINGBO INNO PHARMCHEM CO.,LTD., mastering these 11-alpha-Hydroxycarvenone synthesis techniques ensures the consistent delivery of a product meeting stringent purity requirements (typically ≥99%).
Beyond its direct use in Eplerenone production, 11-alpha-Hydroxycarvenone is also a sought-after chemical in the broader specialty chemical synthesis sector. Researchers and developers value it for its unique structural properties, which can be leveraged in the creation of novel compounds. Companies looking to buy 11-alpha-Hydroxycarvenone for their specialized projects benefit from reliable suppliers who understand the nuances of handling and producing such high-value pharmaceutical intermediates.
Perspectives & Insights
Agile Reader One
“, mastering these 11-alpha-Hydroxycarvenone synthesis techniques ensures the consistent delivery of a product meeting stringent purity requirements (typically ≥99%).”
Logic Vision Labs
“Beyond its direct use in Eplerenone production, 11-alpha-Hydroxycarvenone is also a sought-after chemical in the broader specialty chemical synthesis sector.”
Molecule Origin 88
“Researchers and developers value it for its unique structural properties, which can be leveraged in the creation of novel compounds.”