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4-Pentenoic acid exhibits broad-spectrum antibacterial activity against foodborne pathogens by disrupting bacterial membrane integrity and inhibiting efflux pump systems.

Created on 05 Aug 2026

Authors

Jiaming Mu, Jie Li, Fushuang Duan, Rui Wen, Xuepeng Cai, Qingling Meng, Jun Qiao, Zhongmei Ma

Published in

International journal of food microbiology. Volume 461. Pages 111998. Aug 03, 2026. Epub Aug 03, 2026.

Abstract

The antibacterial activities of numerous medium and long-chain unsaturated fatty acids are well documented. However, the natural short-chain unsaturated fatty acid, 4-pentenoic acid (C5:1 Δ4) has not been systematically evaluated for its antibacterial activity, mechanism of action, or application potential. This study investigated these to provide a basis for novel preservatives. 4-Pentenoic acid showed broad-spectrum activity against 21 strains of pathogenic bacteria, with MICs 1.5-3 mg/mL, MBCs 3-6 mg/mL, and low resistance risk. It disrupted bacterial membrane integrity, inhibited biofilm formation, and regulated the pdu, nar and RND efflux pump genes, thereby affecting bacterial metabolism and stress responses. Checkerboard broth microdilution susceptibility assays confirmed that the combination of 4-pentenoic acid with antibiotics (such as meropenem) exerted additive antibacterial effects. At effective antibacterial concentrations, oral administration of 4-pentenoic acid caused no observable toxicity. It can markedly inhibit the proliferation of pathogenic bacteria in milk, beef, and peanut butter, while dosages close to the minimum inhibitory concentration exerted minimal adverse effects on the sensory properties and pH of these foods. In summary, this study provides theoretical and experimental basis for the development of new food preservatives and antibacterial agents.

PMID:
42551049
Bibliographic data and abstract were imported from PubMed on 05 Aug 2026.

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