4-Amino-5-ethylsulfonyl-2-methoxybenzoic Acid: A Vital Pharmaceutical Intermediate
Discover the key intermediate for Amisulpride synthesis and its critical role in pharmaceutical advancements.
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4-Amino-5-ethylsulfonyl-2-methoxybenzoic Acid
This compound is a vital intermediate in the synthesis of amisulpride, an important antipsychotic drug. Its precise chemical structure and high purity are essential for ensuring the efficacy and safety of the final pharmaceutical product. It is also identified as Amisulpride EP Impurity E, playing a significant role in quality control processes.
- Explore the synthesis of 4-Amino-5-ethylsulfonyl-2-methoxybenzoic acid to understand its production process and how it contributes to advanced API synthesis.
- As a critical pharmaceutical intermediate, its quality directly impacts the effectiveness of drugs like Amisulpride, making it a key element in drug development.
- Understanding the role of CAS 71675-87-1 in pharmaceutical manufacturing highlights its significance in the broader landscape of fine chemicals.
- Reliable 4-Amino-5-ethylsulfonyl-2-methoxybenzoic acid suppliers are crucial for consistent production, ensuring that the demand for this essential compound is met.
Advantages Provided by the Product
Enhanced Drug Synthesis Efficiency
Utilizing this high-purity pharmaceutical intermediate streamlines the complex API synthesis, contributing to more efficient drug manufacturing processes.
Critical for Quality Control
As Amisulpride EP Impurity E, it is indispensable for rigorous quality control in amisulpride production, ensuring compliance with pharmaceutical standards.
Foundation for New Drug Development
The compound's unique properties make it a valuable building block for researchers exploring new drug candidates and chemical applications.
Key Applications
Amisulpride Production
This compound is a primary intermediate in the synthesis of Amisulpride, a widely used antipsychotic medication, underscoring its importance in mental health treatment.
Pharmaceutical Manufacturing
It serves as a key building block in various pharmaceutical manufacturing processes, contributing to the creation of essential medicines.
API Synthesis
The compound is integral to the synthesis of Active Pharmaceutical Ingredients (APIs), supporting the development of new and existing drugs.
Research and Development
Its chemical structure and properties make it a subject of ongoing research, exploring potential applications in novel therapeutic areas and chemical innovations.