Methyl 4-(Butyrylamino)-3-Methyl-5-Nitrobenzoate: A Key Pharmaceutical Intermediate
Essential for Sartan synthesis and vital in hypertension treatment research and development.
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Methyl 4-(butyrylamino)-3-methyl-5-nitrobenzoate
This compound is a vital building block in the pharmaceutical industry, specifically recognized for its role as an intermediate in the synthesis of Sartan-class drugs, which are critical in managing hypertension. Its unique chemical structure facilitates complex organic synthesis processes, making it invaluable for drug development and chemical research.
- Discover the critical role of methyl 4-(butyrylamino)-3-methyl-5-nitrobenzoate synthesis in creating advanced pharmaceutical intermediates.
- Explore the significance of Sartan intermediates in the development of life-saving cardiovascular medications.
- Understand why pharmaceutical intermediates with CAS 152628-01-8 are essential for modern drug discovery processes.
- Learn how these organic synthesis reagents contribute to innovation in chemical research laboratories worldwide.
Advantages Provided by the Product
High Purity and Quality
Ensuring batch-to-batch consistency, this compound offers purity typically exceeding 98%, a critical factor for reliable pharmaceutical synthesis and meeting stringent quality control requirements in drug development.
Versatile Application in Synthesis
As an essential organic synthesis reagent, it enables the creation of complex molecular structures, proving indispensable for both laboratory research and industrial-scale production of advanced chemicals.
Crucial for Hypertension Management
Its role as a precursor for Sartan drugs directly impacts the development of treatments for hypertension, contributing significantly to cardiovascular health solutions.
Key Applications
Pharmaceutical Synthesis
This compound is fundamental in the synthesis of various active pharmaceutical ingredients (APIs), particularly those used in cardiovascular treatments, underscoring its importance in the pharmaceutical intermediates sector.
Sartan Intermediates
It serves as a key building block for Sartan-class drugs, which are widely prescribed for managing hypertension and related cardiovascular conditions, highlighting its specific application in this therapeutic area.
Organic Synthesis
Beyond pharmaceuticals, it acts as a valuable reagent in broader organic synthesis, allowing chemists to construct intricate molecular frameworks for diverse research applications.
Chemical Research
Researchers utilize this nitrobenzoate derivative for its reactive properties and structural features, aiding in the exploration of new chemical entities and reaction pathways in academic and industrial settings.