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Function of Various Intestinal Bacteria in Converting Germfree Mice to the Normal State

机译:各种肠道细菌在将无胚小鼠转变为正常状态中的作用

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Earlier work had shown that a collection of anaerobic bacteria, in conjunction with facultative anaerobes, may be implanted into germfree mice, thereby rendering the animals “normal” with respect to a variety of parameters tested. The present experiments indicate that a different collection of anaerobic bacteria, isolated from the cecum of normal mice, was necessary to convert germfree mice to the “normal” state when the animals were fed a crude diet, rather than the refined food which had been used in the earlier work. The nature and level of short-chain fatty acids associated with various natural or synthetic “normal” floras in the ceca of mice did not always correlate with the Escherichia coli population present, indicating that fatty acids were not the sole agents inhibiting bacterial populations in the intestine. Experiments are reported which indicate that intestinal anaerobes may under certain circumstances be sufficient to control the populations of other intestinal bacteria such as E. coli. In other instances, such as control of Shigella populations in the mouse intestine, intestinal anaerobes appeared to act synergistically with an E. coli strain, in spite of the fact that the population of the latter was itself suppressed by the anaerobes.
机译:早期的工作表明,厌氧细菌的集合以及兼性厌氧菌可以植入无菌小鼠体内,从而使动物相对于各种测试参数而言“正常”。目前的实验表明,从普通小鼠的盲肠中分离出不同种类的厌氧细菌是必要的,以便在给动物饲喂粗饲料而不是原来使用的精制食物时将无菌小鼠转变为“正常”状态在早期的工作中。与小鼠盲肠中各种天然或合成“正常”菌群相关的短链脂肪酸的性质和水平并不总是与存在的大肠杆菌种群相关,这表明脂肪酸不是抑制肠道细菌种群的唯一药物。据报道的实验表明,肠厌氧菌在某些情况下可能足以控制其他肠细菌,例如 E。大肠杆菌。在其他情况下,例如控制小鼠肠道中的志贺氏菌种群,肠道厌氧菌似乎与 E协同作用。尽管大肠杆菌的种群本身被厌氧菌所抑制,但事实却并非如此。

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