Agbemavor Wisdom Selorm Kofi, Buys Elna Maria
Department of Consumer and Food Sciences, University of Pretoria, Private Bag X20, Pretoria 0028, South Africa.
Radiation Technology Centre, Biotechnology and Nuclear Agriculture Research Institute, Ghana Atomic Energy Commission, Legon, Accra P.O. Box LG 80, Ghana.
Microorganisms. 2023 Dec 8;11(12):2942. doi: 10.3390/microorganisms11122942.
This study delves into the temporal dynamics of bacterial interactions in the gastrointestinal tract, focusing on how probiotic strains and pathogenic bacteria influence each other and human health. This research explores adhesion, competitive exclusion, displacement, and inhibition of selected diarrhoeagenic (D-EAEC) and potential probiotic strains under various conditions. Key findings reveal that adhesion is time-dependent, with both D-EAEC K2 and probiotic FS2 showing increased adhesion over time. Surprisingly, FS2 outperformed D-EAEC K2 in adhesion and exhibited competitive exclusion and displacement, with inhibition of adhesion surpassing competitive exclusion. This highlights probiotics' potential to slow pathogen attachment when not in competition. Pre-infecting with FS2 before pathogenic infection effectively inhibited adhesion, indicating probiotics' ability to prevent pathogen attachment. Additionally, adhesion correlated strongly with interleukin-8 (IL-8) secretion, linking it to the host's inflammatory response. Conversely, IL-8 secretion negatively correlated with trans-epithelial electrical resistance (TEER), suggesting a connection between tight junction disruption and increased inflammation. These insights offer valuable knowledge about the temporal dynamics of gut bacteria interactions and highlight probiotics' potential in competitive exclusion and inhibiting pathogenic bacteria, contributing to strategies for maintaining gastrointestinal health and preventing infections.
本研究深入探讨胃肠道中细菌相互作用的时间动态,重点关注益生菌菌株和病原菌如何相互影响以及对人类健康的影响。本研究探索了在各种条件下选定的致腹泻性(D-EAEC)和潜在益生菌菌株的黏附、竞争排斥、取代和抑制作用。主要研究结果表明,黏附具有时间依赖性,D-EAEC K2和益生菌FS2的黏附均随时间增加。令人惊讶的是,FS2在黏附方面优于D-EAEC K2,并表现出竞争排斥和取代作用,其对黏附的抑制作用超过竞争排斥作用。这突出了益生菌在非竞争状态下减缓病原体附着的潜力。在病原菌感染前用FS2进行预感染可有效抑制黏附,表明益生菌具有防止病原体附着的能力。此外,黏附与白细胞介素-8(IL-8)分泌密切相关,将其与宿主的炎症反应联系起来。相反,IL-8分泌与跨上皮电阻(TEER)呈负相关,表明紧密连接破坏与炎症增加之间存在联系。这些见解提供了有关肠道细菌相互作用时间动态的宝贵知识,并突出了益生菌在竞争排斥和抑制病原菌方面的潜力,有助于制定维持胃肠道健康和预防感染的策略。