Stress-free (s)-4-boc-3-morpholineacetic Acid Best Choice [b5BSxQq9]
(S)-4-Boc-3-Morpholineacetic Acid: A Key Intermediate(S)-4-Boc-3-Morpholineacetic Acid is a highly versatile and essential compound in the field of pharmaceutical development. This specialized intermediate is renowned for its unique structure, which
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Stress-free (s)-4-boc-3-morpholineacetic Acid Best Choice [b5BSxQq9]
(S)-4-Boc-3-Morpholineacetic Acid: A Key Intermediate
(S)-4-Boc-3-Morpholineacetic Acid is a highly versatile and essential compound in the field of pharmaceutical development. This specialized intermediate is renowned for its unique structure, which significantly enhances drug efficacy and bioavailability. Its robust chemical properties make it an indispensable tool in the synthesis of various pharmaceuticals, particularly those designed to target neurological disorders. With its precision and efficiency, (S)-4-Boc-3-Morpholineacetic Acid is a cornerstone in advancing therapeutic treatments.
Properties and Specifications
(S)-4-Boc-3-Morpholineacetic Acid boasts a highly reactive functional group, enabling seamless integration into complex chemical reactions. It is available in high purity, ensuring the integrity of the final products. The compound is also characterized by its stability, making it suitable for long-term storage and handling. Its specifications include a melting point of 102-104°C and a molecular weight of 277.34 g/mol. These precise specifications guarantee consistent performance in various research applications.
Applications and Benefits
(S)-4-Boc-3-Morpholineacetic Acid finds wide application in multiple research fields. Its primary uses include:
- Pharmaceutical Development: It serves as a critical intermediate in the synthesis of neurological drugs, contributing to improved treatment outcomes.
- Peptide Synthesis: This compound is instrumental in creating complex peptides, essential for therapeutic applications and biochemical research.
Additionally, its ability to be incorporated into drug delivery systems enhances the stability and release profiles of active pharmaceutical ingredients, ensuring effective treatment regimens. The compound's reactive nature also allows for bioconjugation, enabling targeted therapy and diagnostic applications. With (S)-4-Boc-3-Morpholineacetic Acid, researchers can delve deeper into chemical biology studies, unraveling enzyme mechanisms and protein interactions to advance cellular processes. This compound is an invaluable asset for any laboratory seeking to push the boundaries of pharmaceutical innovation and research.
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