High-Purity 1-(3-Methyl-1-phenyl-5-pyrazolyl)piperazine: A Key Intermediate for Teneligliptin Synthesis
Unlock advanced pharmaceutical development with this critical intermediate for potent anti-diabetic medications.
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1-(3-Methyl-1-phenyl-5-pyrazolyl)piperazine
This high-quality chemical compound serves as a vital building block in the complex synthesis of Teneligliptin, a widely recognized dipeptidylpeptidase-4 (DPP-4) inhibitor. Its exceptional purity ensures reliability and efficiency in the production of advanced anti-diabetic pharmaceuticals.
- Key intermediate for Teneligliptin synthesis, contributing to the development of effective anti-diabetic treatments.
- High purity (>98%) ensures consistent results in pharmaceutical manufacturing processes.
- Provided as a white to off-white crystalline powder, facilitating accurate measurement and handling in laboratory and industrial settings.
- Supports crucial drug discovery and research efforts in the field of metabolic disorders.
Advantages
Assured Quality & Purity
Leverage the benefits of a consistently high-purity pharmaceutical intermediate, crucial for meeting stringent regulatory requirements in API synthesis.
Streamlined Synthesis
Utilize a precisely manufactured intermediate to optimize your chemical synthesis of Teneligliptin, reducing complexity and potential side reactions.
Supports Customization
Benefit from the flexibility of custom chemical manufacturing tailored to your specific project needs, ensuring the right intermediate for your unique application.
Key Applications
Pharmaceutical Synthesis
Critical role in the production of Teneligliptin, a key component in treatments for type II diabetes, showcasing its importance in the pharmaceutical intermediate for diabetes treatment sector.
Drug Discovery & Development
An essential compound for researchers involved in developing new therapies for diabetes and related metabolic disorders, highlighting its value in drug discovery and research.
Chemical Research
Serves as a valuable reagent in advanced organic chemistry research, particularly in the synthesis of complex heterocyclic compounds and fine chemical intermediates for research.
Custom Manufacturing Projects
An ideal starting material or intermediate for custom synthesis projects requiring high-purity pyrazine derivatives within the pharmaceutical and fine chemical industries.