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铜离子处理对禽分枝杆菌亚种副结核分支杆菌的抗菌活性途径的实验证据。

Experimental evidence of the anti-bacterial activity pathway of copper ion treatment on Mycobacterium avium subsp. paratuberculosis.

机构信息

Instituto de Medicina Preventiva Veterinaria, Facultad de Ciencias Veterinarias, Universidad Austral de Chile, Valdivia, Chile.

Escuela de Graduados, Valdivia, Chile.

出版信息

Braz J Microbiol. 2023 Mar;54(1):407-413. doi: 10.1007/s42770-022-00897-w. Epub 2022 Dec 27.

Abstract

Copper causes significant damage to the integrity of many bacteria, mainly at the DNA level, through its redox states, as well as its reactive oxygen species (ROS) generating capacity at the cellular level. But whether these mechanisms also apply to Mycobacterium avium subsp. paratuberculosis (MAP) is unknown. In the present study, we have evaluated whether copper ions produce damage at the DNA level of MAP, either through their redox states or through ROS production. MAP-spiked PBS was first supplemented with different copper chelators (2) and ROS antioxidants (3), followed by treatment with copper ions at 942 ppm. MAP DNA integrity (qPCR, magnetic phage separation) was then evaluated. We found that bathocuproine (BCS), as a chelator, and D-mannitol, as an antioxidant of hydroxyl radicals, had a significant protective effect (P < 0.05) on DNA molecules, and that EDTA, as a chelator, and D-mannitol, as an antioxidant had a significant positive effect (P < 0.05) on the viability of this pathogen in contrast to the control and other chelators and anti-oxidants used. In light of the reported findings, it may be concluded that copper ions within MAP cells are directly related to MAP DNA damage.

摘要

铜通过其氧化还原状态以及在细胞水平生成活性氧物种(ROS)的能力,对许多细菌的完整性造成严重损害,主要是在 DNA 水平上。但是,这些机制是否也适用于鸟分枝杆菌副结核亚种(MAP)尚不清楚。在本研究中,我们评估了铜离子是否通过其氧化还原状态或通过 ROS 生成对 MAP 的 DNA 水平造成损害。首先将含有 MAP 的 PBS 用不同的铜螯合剂(2)和 ROS 抗氧化剂(3)进行补充,然后用 942 ppm 的铜离子进行处理。然后评估 MAP DNA 完整性(qPCR、磁噬菌体分离)。我们发现,作为螯合剂的浴铜灵(BCS)和作为羟基自由基抗氧化剂的 D-甘露醇对 DNA 分子有显著的保护作用(P<0.05),而作为螯合剂的 EDTA 和作为抗氧化剂的 D-甘露醇与对照相比对该病原体的存活有显著的积极作用(P<0.05)以及其他使用的螯合剂和抗氧化剂。根据报告的发现,可以得出结论,MAP 细胞内的铜离子直接与 MAP DNA 损伤有关。

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