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Antibiotic Resistance Capability of Cultured Human Colonic Microbiota Growing in a Chemostat Model

机译:在Chemostat模型中培养的人类结肠菌群的抗生素抗性能力

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To evaluate the potential antibiotic resistance capability of cultured human colonic microbiota as a whole system when residual antibiotics enter the human intestine, the combination of viable cell counting and denaturing gradient gel electrophoresis (DGGE) method was used to study effects of the enrofloxacin (ENR) residue on the microbial diversity, antibiotic resistance, and anti-colonization capability in a human chemostat model. The results indicated that the ENR enhanced the microbial antibiotic resistance to the ciprofloxacin (CI), and a dose-dependent effect was observed. When exposed to 1.25 μg/mL ENR, the growth of the tested bacteria (e.g., total aerobic bacteria, total anaerobic bacteria, Lactobacillus, Enterococci, Escherichia coli, Bacteroides fragilis) received little change, while the microbial diversity in this group was totally changed; In 12.5- and 125-μg/mL ENR group, the quantities and microbial diversity received a dramatic change compared to their no drug stage, while the addition of the cultured human colonic microbiota to the probiotic group did enhance the colonization resistance (CR) of the cultured microbiota to Candida albicans SC5314, indicating its potential beneficial effect on human intestinal healthy and anti-infection capability.
机译:为了评估当残留抗生素进入人肠时培养的人类结肠菌群作为一个整体系统的潜在抗药性,结合活细胞计数和变性梯度凝胶电泳(DGGE)方法研究了恩诺沙星(ENR)的作用在人类恒化模型中残留的微生物多样性,抗生素抗性和抗殖民能力。结果表明,ENR增强了微生物对环丙沙星(CI)的耐药性,并观察到剂量依赖性。当暴露于1.25μg/ mL ENR时,受测细菌(例如,总需氧菌,总厌氧菌,乳酸杆菌,肠球菌,大肠杆菌,脆弱拟杆菌)的生长几乎没有变化,而该组中的微生物多样性却完全改变了;在12.5μg/ mL和125μg/ mL的ENR组中,与无药阶段相比,其数量和微生物多样性发生了显着变化,而在益生菌组中添加了培养的人结肠菌群确实增强了其抗定殖性(CR)。培养的白色念珠菌SC5314菌群,表明其对人体肠道健康和抗感染能力具有潜在的有益作用。

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