CAS · 6976-17-6
Product Overview
4-(Methylamino)-Butanoic Acid Hydrochloride is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White to off-white solid |
|---|---|
| Purity | 97% min |
| HNMR | Conform |
Applications
4-(Methylamino)-Butanoic Acid Hydrochloride is primarily used as a chemical intermediate in pharmaceutical and biochemical research. It serves as a precursor in the synthesis of amino acid derivatives, neurotransmitter analogs, and other bioactive molecules that require a functionalized butanoic acid backbone. The compound is also applied in medicinal chemistry for developing central nervous system agents, enzyme inhibitors, and metabolic modulators. In research laboratories, it is employed for studying amino acid metabolism, receptor interactions, and structure-activity relationships in drug discovery projects, where precise functional groups are necessary for targeted chemical modifications.
Benefits
The benefits of 4-(Methylamino)-Butanoic Acid Hydrochloride arise from its stable hydrochloride form, which improves solubility and handling in aqueous systems. Its functional groups-a primary carboxyl and a methylamino group-provide versatile reactivity for forming amides, esters, or other derivatives, enabling efficient multi-step synthesis. The compound's well-defined structure and stereochemical consistency facilitate reproducible reactions and predictable outcomes in both laboratory and industrial settings. Additionally, it supports high-purity synthesis and reduces side reactions, which is critical for producing biologically active molecules with consistent quality and performance.
Conclusion
4-(Methylamino)-Butanoic Acid Hydrochloride is a valuable intermediate for pharmaceutical and biochemical applications, particularly in the synthesis of amino acid derivatives and bioactive compounds. Its applications in medicinal chemistry and research, together with benefits such as solubility, reactivity, and reproducibility, make it an essential tool in modern chemical and drug development workflows. The compound enables efficient, high-quality synthesis of target molecules while supporting diverse experimental and industrial processes.
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