Ji Qing-Yang, Wang Wenqiong, Yan Haodong, Qu Hengxian, Liu Yang, Qian Yi, Gu Ruixia
College of Food Science and Engineering, Yangzhou University, Yangzhou 225127, China.
Foods. 2023 Aug 10;12(16):3011. doi: 10.3390/foods12163011.
Organic acids are natural antimicrobial compounds commonly used in the food industry. In this study, acetic, lactic, butyric, citric, and malic acid at minimum inhibitory concentrations and their combinations at optimal inhibition concentrations were used to treat , and the effects on the cell barrier and biofilm of were evaluated. Acetic acid showed the highest membrane-damaging effect, while citric acid and malic acid could specifically damage the cell wall of , leading to alkaline phosphatase leakage. The RT-qPCR results showed that organic acids upregulated the membrane-protein-related genes of , and the combination of organic acids had a wider range of effects than single organic acid treatment. Moreover, organic acids inhibited the formation of biofilm and cellular activity within the biofilm. This study showed that the combination of organic acids plays a synergistic inhibitory role mainly through multiple destructive effects on the cell barrier and exhibited synergistic anti-biofilm effects. The three-three combination of acetic, lactic acid, and a third organic acid (butyric, citric, or malic) can play a better synergistic antibacterial effect than the two-pair combination of acetic and lactic acid. These findings have implications for the usage, development, and optimization of organic acid combinations.
有机酸是食品工业中常用的天然抗菌化合物。在本研究中,使用最低抑菌浓度的乙酸、乳酸、丁酸、柠檬酸和苹果酸及其最佳抑制浓度的组合来处理,评估其对细胞屏障和生物膜的影响。乙酸表现出最高的膜损伤作用,而柠檬酸和苹果酸可特异性损伤细胞壁,导致碱性磷酸酶泄漏。RT-qPCR结果表明,有机酸上调了相关的膜蛋白基因,并且有机酸组合的作用范围比单一有机酸处理更广。此外,有机酸抑制生物膜的形成以及生物膜内的细胞活性。本研究表明,有机酸组合主要通过对细胞屏障的多种破坏作用发挥协同抑制作用,并表现出协同抗生物膜作用。乙酸、乳酸与第三种有机酸(丁酸、柠檬酸或苹果酸)的三三组合比乙酸和乳酸的两两组合能发挥更好的协同抗菌效果。这些发现对有机酸组合的使用、开发和优化具有启示意义。