(Z)-3-(3-chloropropyl)-7,8-diethyl-1H-benzo[d]azepin-2(3H)-one: Synthesis, Properties, and Pharmaceutical Applications
Unveiling the key pharmaceutical intermediate for advanced cardiovascular drug development and organic synthesis.
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(Z)-3-(3-chloropropyl)-7,8-diethyl-1H-benzo[d]azepin-2(3H)-one
This compound, identified by CAS number 85175-59-3, is a critical building block in the pharmaceutical industry. Its unique chemical structure makes it indispensable for the synthesis of Ivabradine hydrochloride and its related analogues, which are vital in treating cardiovascular diseases by regulating heart rate.
- Unlock advanced cardiovascular therapies by leveraging our high-purity pharmaceutical intermediate for Ivabradine hydrochloride synthesis.
- Explore efficient chemical synthesis routes for Zatebradine analogues, utilizing our specialized benzazepine derivative.
- Enhance drug discovery processes with a reliable API intermediate, crucial for developing novel treatments for myocardial ischemia.
- Discover the power of our (Z)-3-(3-chloropropyl)-7,8-diethyl-1H-benzo[d]azepin-2(3H)-one in organic synthesis for pharmaceutical applications.
Key Advantages
High Purity and Quality
Our product boasts high purity, ensuring reliable outcomes in your critical drug discovery and synthesis projects, vital for effective cardiovascular drug development.
Versatile Application
Serves as a crucial pharmaceutical intermediate, enabling the synthesis of various complex molecules, including Ivabradine and its analogues, supporting diverse medicinal chemistry needs.
Reliable Synthesis Intermediate
A key component in the organic synthesis of important APIs, contributing to the efficient production of life-saving cardiovascular medications.
Key Applications
Pharmaceutical Synthesis
Essential for the production of Ivabradine hydrochloride, a drug used to manage heart rate and treat conditions like angina pectoris. This highlights its direct impact on cardiovascular treatments.
Drug Discovery Research
Serves as a building block for creating Zatebradine analogues, which are studied for their potential to block hyperpolarization-activated currents, advancing research in cardiac electrophysiology.
API Intermediate Production
A fundamental intermediate for active pharmaceutical ingredients (APIs), facilitating the complex synthesis required for potent and effective therapeutic agents in the pharmaceutical industry.
Custom Synthesis Projects
Its well-defined chemical properties make it a valuable component for custom synthesis projects aimed at developing novel chemical entities with potential therapeutic benefits.