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从滑鼠蛇中筛选出的肠道细菌对属于T4基因型的病原体具有抑制作用。

Selected Gut Bacteria from Water Monitor Lizard Exhibit Effects against Pathogenic Belonging to the T4 Genotype.

作者信息

Akbar Noor, Khan Naveed Ahmed, Giddey Alexander D, Soares Nelson C, Alharbi Ahmad M, Alfahemi Hasan, Siddiqui Ruqaiyyah

机构信息

Department of Clinical Sciences, College of Medicine, University of Sharjah, University City, Sharjah 27272, United Arab Emirates.

Sharjah Institute for Medical Research, University of Sharjah, Sharjah 27272, United Arab Emirates.

出版信息

Microorganisms. 2023 Apr 20;11(4):1072. doi: 10.3390/microorganisms11041072.

Abstract

Water monitor lizards (WMLs) reside in unhygienic and challenging ecological surroundings and are routinely exposed to various pathogenic microorganisms. It is possible that their gut microbiota produces substances to counter microbial infections. Here we determine whether selected gut bacteria of water monitor lizards (WMLs) possess anti-amoebic properties using of the T4 genotype. Conditioned media (CM) were prepared from bacteria isolated from WML. The CM were tested using amoebicidal, adhesion, encystation, excystation, cell cytotoxicity and amoeba-mediated host cell cytotoxicity assays . Amoebicidal assays revealed that CM exhibited anti-amoebic effects. CM inhibited both excystation and encystation in . CM inhibited amoebae binding to and cytotoxicity of host cells. In contrast, CM alone showed limited toxic effects against human cells . Mass spectrometry revealed several antimicrobials, anticancer, neurotransmitters, anti-depressant and other metabolites with biological functions. Overall, these findings imply that bacteria from unusual places, such as WML gut, produce molecules with anti-acanthamoebic capabilities.

摘要

水巨蜥生活在不卫生且充满挑战的生态环境中,经常接触各种致病微生物。它们的肠道微生物群有可能产生对抗微生物感染的物质。在这里,我们使用T4基因型来确定水巨蜥选定的肠道细菌是否具有抗阿米巴特性。条件培养基(CM)由从水巨蜥分离出的细菌制备而成。使用杀阿米巴、黏附、包囊形成、脱囊、细胞毒性和阿米巴介导的宿主细胞毒性试验对CM进行测试。杀阿米巴试验表明CM具有抗阿米巴作用。CM在……中抑制脱囊和包囊形成。CM抑制阿米巴与宿主细胞的结合及细胞毒性。相比之下,单独的CM对人类细胞显示出有限的毒性作用。质谱分析揭示了几种具有生物功能的抗菌、抗癌、神经递质、抗抑郁和其他代谢产物。总体而言,这些发现表明来自不寻常地方(如水巨蜥肠道)的细菌会产生具有抗棘阿米巴能力的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/456c/10142573/42496eb5bff5/microorganisms-11-01072-g001.jpg

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