N-Ethyl-2-(4-Formylphenyl)Acetamide: Key Intermediate for Elacestrant Synthesis
Discover the synthesis, applications, and critical role of this pharmaceutical intermediate in advanced drug development.
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N-Ethyl-2-(4-Formylphenyl)Acetamide
This compound, known as Benzeneacetamide, N-ethyl-4-formyl-, is a vital pharmaceutical intermediate. Its unique structure, featuring a formyl group and an acetamide moiety, makes it an indispensable building block in the synthesis of Elacestrant, a groundbreaking selective estrogen receptor degrader (SERD) used in treating hormone-receptor-positive breast cancer. Understanding its chemical properties and synthesis is crucial for advancing therapeutic solutions.
- This compound serves as a critical precursor in the N-Ethyl-2-(4-Formylphenyl)Acetamide synthesis for Elacestrant.
- Explore the diverse organic synthesis building blocks capabilities of this compound for creating complex molecules.
- Learn about the Benzeneacetamide N-Ethyl-4-Formyl properties and its role in drug discovery pipelines.
- Delve into the various pharmaceutical intermediate synthesis routes to achieve high purity and yield.
Product Advantages
Versatile Synthesis Intermediate
Leverage the compound's reactivity for various organic synthesis building blocks, enabling the creation of complex molecular structures essential for drug development.
Key to Elacestrant Production
As a vital component in the Elacestrant intermediate manufacturer process, it directly contributes to the production of a novel SERD therapy.
Catalytic Synthesis Expertise
Benefit from optimized N-Ethyl-2-(4-Formylphenyl)Acetamide synthesis methods, including palladium-catalyzed coupling and stereoselective reductions, ensuring high purity and yield.
Key Applications
Pharmaceutical Manufacturing
Essential for the large-scale production of Elacestrant, contributing to the treatment of estrogen receptor-positive breast cancer.
Organic Chemical Synthesis
Acts as a versatile building block for creating novel compounds in research and development, exploring new chemical pathways.
Medicinal Chemistry Research
Facilitates the development of new therapeutic agents by providing a core structure with tunable properties for various targets.
Drug Discovery Pipelines
Supports the creation of next-generation pharmaceuticals by offering a reliable and high-purity intermediate for complex drug molecules.
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