(3R,4R)-3,4-Dimethyl-4-(3-hydroxyphenyl)piperidine: A Key Pharmaceutical Intermediate with High Purity
Discover a critical building block for advanced pharmaceutical research and development.
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(3R,4R)-3,4-Dimethyl-4-(3-hydroxyphenyl)piperidine
This compound serves as a vital intermediate in the preparation of Alvimopan, a pharmaceutical agent. Its precisely defined structure and high purity levels make it indispensable for achieving desired outcomes in complex drug synthesis pathways.
- High Purity for Pharmaceutical Applications: Sourced with purity levels of NLT 98%, ensuring reliability in drug discovery research.
- Key Intermediate for Alvimopan Synthesis: Critical for the manufacturing of Alvimopan, highlighting its importance in the pharmaceutical supply chain.
- Detailed Chemical Profile Provided: Includes molecular formula (C13H19NO), molecular weight (205.3 g/mol), and physical appearance (White to Light yellow powder to crystal).
- Expertly Sourced Building Block: Offers a unique combination of phenolic and piperidine moieties with specific stereochemistry for targeted biological activity.
Advantages Offered
Reliable Synthesis Support
Leverage this high purity intermediate to ensure successful and reproducible synthesis of complex pharmaceutical compounds, contributing to efficient drug discovery research.
Crucial for Drug Development
As a key component in the production of Alvimopan, this piperidine derivative plays a significant role in the development of new therapeutic agents.
Quality Assurance
Supplied with adherence to stringent quality standards, ensuring that your research and manufacturing processes meet regulatory expectations.
Key Applications
Pharmaceutical Intermediates
Essential for the synthesis of active pharmaceutical ingredients (APIs), particularly in the development of gastrointestinal agents like Alvimopan.
Drug Discovery Research
Serves as a valuable building block for medicinal chemists exploring new therapeutic targets and developing novel drug candidates.
Fine Chemical Synthesis
Its specific chemical structure makes it a useful component in various fine chemical synthesis projects requiring specialized piperidine derivatives.
Medicinal Chemistry
The unique combination of functional groups and stereochemistry makes it a compound of interest for structure-activity relationship studies in medicinal chemistry.