The Crucial Role of 4-Amino-2-Fluoro-N-Methylbenzamide in Modern Pharmaceuticals
Discover the synthesis, properties, and applications of a vital intermediate driving advancements in cancer treatment.
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4-Amino-2-Fluoro-N-Methylbenzamide
This compound, identified by CAS number 915087-25-1, stands as a cornerstone in the synthesis of Apalutamide, a critical medication used in the fight against advanced prostate cancer. Its precisely defined chemical structure and high purity levels (>98%) ensure reliable outcomes in complex multi-step pharmaceutical manufacturing processes.
- Synthesis of Apalutamide: This crucial intermediate plays an indispensable role in the efficient production of Apalutamide, a targeted therapy for prostate cancer.
- High Purity and Quality Assurance: With a purity exceeding 98%, this compound meets stringent pharmaceutical standards, ensuring the integrity and efficacy of the final drug product.
- Advanced Pharmaceutical Synthesis: Its application is central to advanced pharmaceutical intermediate manufacturing techniques, supporting the development of cutting-edge treatments.
- Scientific Research and Development: Beyond its primary role, 4-Amino-2-Fluoro-N-Methylbenzamide is instrumental in various scientific research endeavors and the development of novel compounds.
Key Advantages and Features
Purity and Reliability
Achieving >98% purity, this chemical intermediate guarantees consistent and predictable results in sensitive pharmaceutical applications, supporting reliable drug discovery.
Strategic Intermediate Role
As a key Apalutamide precursor, it is fundamental for synthesizing targeted therapies, impacting patient outcomes in cancer treatment.
Facilitating Complex Synthesis
The compound's well-defined properties make it a valuable building block in complex organic synthesis, essential for creating innovative pharmaceutical agents.
Key Applications
Oncology Drug Synthesis
Essential for producing Apalutamide, a vital medication for treating advanced prostate cancer, leveraging its specific chemical structure.
Pharmaceutical Intermediates
Serves as a critical component in the broader field of pharmaceutical intermediate manufacturing, enabling the creation of various complex drug molecules.
Drug Discovery
Its versatile nature makes it a valuable building block for researchers exploring new chemical entities and potential therapeutic agents.
Chemical Synthesis Research
Used in laboratories for organic synthesis research, advancing the understanding and application of fine chemical processes.