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4-Oxoproline

Updated: 2026-08-17

Overview

4-Oxoproline, chemically known as pyroglutamic acid, is a naturally occurring cyclic amino acid derivative. It plays a significant role in metabolic pathways, particularly in the biosynthesis of glutathione. The compound exists in two enantiomeric forms, with L-pyroglutamic acid being the biologically active variant. In industrial contexts, 4-oxoproline serves as a versatile intermediate for pharmaceutical synthesis and research applications. Its stability and reactivity make it valuable for producing peptides and other bioactive molecules. The compound is typically synthesized through cyclization of glutamic acid or extracted from natural sources.

Physical and Chemical Properties

曙尔 N-Boc-4-氧代-L-脯氨酸 84348-37-8 白色结晶粉末 1kg起订武汉曙尔生物科技有限公司

4-Oxoproline appears as a white crystalline powder with a melting point range of 162-165°C. The compound demonstrates good solubility in water and limited solubility in organic solvents like ethanol. Its molecular structure features a five-membered lactam ring, contributing to its stability under normal storage conditions. The chiral nature of 4-oxoproline makes it important to specify the enantiomeric form (L- or D-) when purchasing for specific applications. The L-form is more commonly used in biochemical applications due to its biological relevance. The compound shows typical carboxylic acid and amide functional group reactivity.

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Main Applications

In the pharmaceutical industry, 4-oxoproline serves as a key intermediate for synthesizing various drugs, particularly those targeting neurological conditions. It's used in the production of nootropic compounds and certain antibiotics. The compound also finds application in cosmetic formulations for its skin-conditioning properties. Biochemical research utilizes 4-oxoproline to study metabolic pathways, especially those related to glutathione metabolism. The food industry occasionally employs it as a flavor enhancer, though this application is less common. Recent developments explore its potential in peptide-based therapeutics and drug delivery systems.

Safety and Storage

4-氧代脯氨酸(2002-02-0)湖北信康医药化工有限公司

While 4-oxoproline is not classified as highly hazardous, proper handling precautions should be followed. Personnel should wear appropriate personal protective equipment including gloves and safety glasses when handling the compound in powder form. Avoid creating dust and ensure adequate ventilation in work areas. For storage, maintain the material in tightly sealed containers protected from moisture and light. The compound is stable at room temperature but should be kept in a cool, dry environment for long-term storage. Monitor for any signs of discoloration or moisture absorption, which may indicate degradation.

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B2B Procurement Guide

When sourcing 4-oxoproline commercially, buyers should specify required purity levels (typically 98-99% for most applications) and the desired enantiomeric form. Pharmaceutical-grade material requires additional documentation including certificates of analysis and compliance with relevant pharmacopeia standards. Lead times for specialty grades may be longer, so plan procurement accordingly. Consider ordering smaller test quantities before committing to bulk purchases to verify product quality. Reputable suppliers should provide detailed technical data sheets and material safety information. Price negotiations are often possible for larger quantity orders.

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