2-Bromopyridine-5-carbaldehyde: A Key Intermediate for Antitumor Drug Synthesis and Advanced Chemical Research
Essential heterocyclic organic compound serving as a critical intermediate in pharmaceutical synthesis and research.
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2-Bromopyridine-5-carbaldehyde
This compound is highly valued as a critical component in the synthesis of Abemaciclib, a significant antitumor drug. Its unique structure, featuring both a bromine atom and an aldehyde group on a pyridine ring, makes it an indispensable building block for complex organic synthesis and pharmaceutical development. Its role as a 2-Bromopyridine-5-carbaldehyde intermediate underscores its importance in creating advanced molecular structures.
- Discover the essential role of 2-Bromopyridine-5-carbaldehyde as a key intermediate for Abemaciclib synthesis, contributing to the development of vital antitumor therapies.
- Explore the diverse applications of this heterocyclic organic compound in advanced organic synthesis, enabling the creation of novel chemical entities.
- Understand the CAS 149806-06-4 applications in cutting-edge pharmaceutical research and development processes.
- Leverage this versatile chemical building block for innovative chemical synthesis, driving progress in medicinal chemistry.
Advantages Offered
Chemical Versatility
As a 2-Bromopyridine-5-carbaldehyde intermediate, its dual functional groups allow for a wide range of chemical transformations, crucial for complex organic synthesis pathways.
Pharmaceutical Significance
Its established use in Abemaciclib synthesis highlights its importance as a pharmaceutical intermediate, supporting the production of critical antitumor medications.
Research & Development Tool
The compound is a valuable tool in pharmaceutical research and development, aiding scientists in exploring new drug candidates and synthetic routes.
Key Applications
Antitumor Drug Synthesis
Central to the production of Abemaciclib, this compound plays a vital role in the oncology sector.
Organic Synthesis
Serves as a crucial building block in various organic synthesis projects, enabling the construction of complex molecules.
Pharmaceutical Intermediates
Its classification as a pharmaceutical intermediate makes it indispensable for drug discovery and manufacturing processes.
Chemical Research
Widely utilized in laboratory settings for research and development, pushing the boundaries of chemical science.