3-Boc-amino-2,6-dioxopiperidine: A Key Intermediate in Pharmaceutical Synthesis
Discover the essential properties and applications of this vital pharmaceutical building block.
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3-Boc-amino-2,6-dioxopiperidine
This compound is a critical component in the synthesis pathways of advanced pharmaceuticals, particularly known as a Lenalidomide intermediate. Its precise chemical structure and high purity make it indispensable for drug development and manufacturing.
- Leveraging the structure of Boc-L-Glutamine derivative, this intermediate facilitates complex organic synthesis.
- As a vital Lenalidomide intermediate (CAS 31140-42-8), its consistent quality ensures reliable pharmaceutical production.
- Users can source high-purity pharmaceutical intermediates for sale, supporting efficient drug discovery processes.
- The reliable supply of this chemical synthesis component is crucial for researchers and manufacturers.
Advantages of Using This Intermediate
Enhanced Purity and Consistency
Ensuring a purity of ≥98.0%, this product provides the consistency required for demanding pharmaceutical applications, making it a preferred choice for 3-Boc-amino-2,6-dioxopiperidine synthesis.
Facilitates Complex Molecular Assembly
Its role as a Lenalidomide intermediate highlights its utility in constructing intricate molecular architectures essential for therapeutic efficacy.
Broad Supplier Network
With numerous global suppliers available, securing this chemical synthesis reagent is streamlined, supporting timely project completion.
Key Applications
Pharmaceutical Synthesis
Serves as a primary building block in the synthesis of active pharmaceutical ingredients (APIs), notably as a Lenalidomide intermediate.
Drug Discovery Research
Essential for research and development in medicinal chemistry, aiding the exploration of new therapeutic agents.
Organic Chemistry
Utilized in various organic synthesis processes requiring specific piperidine derivatives, demonstrating its versatility in chemical synthesis.
Process Development
Supports the optimization of manufacturing processes for complex pharmaceutical compounds, ensuring scalability and efficiency.