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pH 值对柠檬酸抗革兰氏阴性菌抗菌活性的影响。

Impact of pH on citric acid antimicrobial activity against Gram-negative bacteria.

机构信息

Complex Assemblies of Soft Matter Laboratory (COMPASS), CNRS-Solvay-University of Pennsylvania, CRTB, Bristol, PA, USA.

Solvay, Novecare CRTB, Bristol, PA, USA.

出版信息

Lett Appl Microbiol. 2021 Mar;72(3):332-340. doi: 10.1111/lam.13420. Epub 2020 Nov 22.

Abstract

The antimicrobial activity of citric acid (CA) is often evaluated without pH adjustment or control and its impact on micro-organisms is better understood in acidic conditions. However, the biocidal action of the fully ionized CA molecule, predominantly available at higher pH, has not been previously investigated. The objective of this study was to evaluate the antimicrobial effect of high (10%) and low (1%) concentrations of CA, each adjusted over a wide range of pH values (4·5, 6·5 and 9·5) relative to the controls exposed to corresponding pH levels alone (no CA). The viability and morphology of Escherichia coli and Klebsiella aerogenes were evaluated using a culture-based enumeration assay in parallel with direct SEM imaging. Overall, the highest membrane damage and loss in viability were achieved with 10% CA at pH 9·5, which yielded at least 4·6 log CFU per ml (P < 0·001) reductions in both organisms. Insight into the superior efficacy of CA at high pH is proposed based on zeta potential measurements which reveal a more negatively charged bacterial surface at higher pH. This pH-dependent increase in surface charge may have rendered the cells potentially more sensitive towards chelants such as CA that interact with membrane-stabilizing divalent metals.

摘要

柠檬酸(CA)的抗菌活性通常在不进行 pH 调整或控制的情况下进行评估,并且在酸性条件下对微生物的影响更为人所了解。然而,完全离解的 CA 分子的杀菌作用,主要在较高 pH 值下存在,以前尚未被研究过。本研究的目的是评估高(10%)和低(1%)浓度 CA 的抗菌效果,每种 CA 都在很宽的 pH 值范围内进行调节(4·5、6·5 和 9·5),与单独暴露于相应 pH 值的对照物(无 CA)相对比。使用基于培养的计数测定法,同时进行直接 SEM 成像,评估大肠埃希氏菌和产气克雷伯氏菌的活力和形态。总体而言,在 pH 9·5 时,10%的 CA 产生的细胞膜损伤和活力丧失最大,两种细菌的减少量均至少为 4·6 log CFU/ml(P<0·001)。根据zeta 电位测量结果提出了 CA 在高 pH 值下具有更高功效的见解,该结果表明在较高 pH 值下细菌表面带更多负电荷。这种 pH 依赖性的表面电荷增加可能使细胞更容易受到 CA 等螯合剂的影响,因为 CA 与稳定细胞膜的二价金属相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/145a/7984346/15e6b9fc1d07/LAM-72-332-g002.jpg

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