Ethyl 7-chloro-2-oxoheptanoate: A Vital Pharmaceutical Intermediate
Discover the chemical properties and critical applications of Ethyl 7-chloro-2-oxoheptanoate in pharmaceutical synthesis and organic chemistry.
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Ethyl 7-chloro-2-oxoheptanoate
Ethyl 7-chloro-2-oxoheptanoate (CAS: 78834-75-0) is a pivotal compound in modern chemical synthesis. Its primary significance lies in its role as a key intermediate in the production of cilastatin, a crucial component used alongside imipenem to enhance antibiotic efficacy by inhibiting dehydropeptidase. Beyond this critical application, this compound serves as a versatile reagent in broader organic synthesis, facilitating the creation of complex molecules for various pharmaceutical developments.
- Unlock Efficient Pharmaceutical Intermediate Synthesis: Leverage Ethyl 7-chloro-2-oxoheptanoate for streamlined and high-yield production of essential drug components.
- Explore Versatile Organic Synthesis Applications: Utilize this compound's reactivity to build complex organic molecules for research and development.
- Source High-Purity Chemical Reagents: Ensure reliable results with Ethyl 7-chloro-2-oxoheptanoate, available with a guaranteed assay of ≥99% purity.
- Investigate Key Pharmaceutical Intermediate Chemical Properties: Understand the physical and chemical characteristics that make this compound indispensable for specific synthetic pathways.
Advantages Provided by the Product
Reliable Cilastatin Intermediate
As a key player in cilastatin intermediate synthesis, this compound ensures the effective use of powerful antibiotics in clinical settings, showcasing its vital role in healthcare.
Broad Organic Synthesis Utility
The versatility of Ethyl 7-chloro-2-oxoheptanoate in organic synthesis allows chemists to explore diverse reaction pathways and develop novel chemical entities for various industries.
Assured Quality and Purity
With a minimum assay of 99%, this chemical reagent provides the high purity necessary for precise and reproducible results in sensitive pharmaceutical manufacturing processes.
Key Applications
Pharmaceutical Synthesis
Essential for the production of pharmaceuticals like cilastatin, improving antibiotic treatment effectiveness. This highlights its critical role in the pharmaceutical industry.
Organic Synthesis
Serves as a versatile building block in organic chemistry, enabling the synthesis of a wide array of complex molecules for research and new product development.
API Intermediate Production
Crucial for the development of Active Pharmaceutical Ingredients (APIs), contributing to the pipeline of new therapeutic agents and the efficient manufacture of existing ones.
Specialty Chemical Manufacturing
Its unique chemical structure and reactivity make it valuable in the specialty chemical sector for niche applications and custom synthesis projects.