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Antibiotic treatment triggers gut dysbiosis and modulates metabolism in a chicken model of gastro-intestinal infection

机译:抗生素治疗触发肠道功能细胞和调节胃肠感染鸡模型中的代谢

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Infection of the digestive track by gastro-intestinal pathogens results in the development of symptoms ranging from mild diarrhea to more severe clinical signs such as dysentery, severe dehydration and potentially death. Although, antibiotics are efficient to tackle infections, they also trigger dysbiosis that has been suggested to result in variation in weight gain in animal production systems. Here is the first study demonstrating the metabolic impact of infection by a gastro-intestinal pathogen (Brachyspira pilosicoli) and its resolution by antibiotic treatment (tiamulin) on the host (chicken) systemic metabolism and gut microbiota composition using high-resolution 1H nuclear magnetic resonance (NMR) spectroscopy and 16S rDNA next generation sequencing (NGS). Clear systemic metabolic markers of infections such as glycerol and betaine were identified. Weight loss in untreated animals was in part explained by the observation of a modification of systemic host energy metabolism characterized by the utilization of glycerol as a glucose precursor. However, antibiotic treatment triggered an increased VLDL/HDL ratio in plasma that may contribute to reducing weight loss observed in treated birds. All metabolic responses co-occurred with significant shift of the microbiota upon infection or antibiotic treatment. This study indicates that infection and antibiotic treatment trigger dysbiosis that may impact host systemic energy metabolism and cause phenotypic and health modifications.
机译:通过胃肠病原体感染消化轨道导致从轻度腹泻到更严重的临床症状的症状的发育,如痢疾,严重脱水和可能死亡。虽然抗生素是有效的粘性感染,但它们还触发了表现出的消化不良,这提出了导致动物生产系统中体重增加的变化。以下是第一项研究,证明了胃肠病原体(Brachyspira pilosicoli)的感染的代谢影响及其通过使用高分辨率1H核磁共振对宿主(鸡)全身代谢和肠道微生物组成的抗生素治疗(硫蛋白)的分辨率(NMR)光谱和16S rDNA下一代测序(NGS)。鉴定了清除甘油和甜菜等感染的系统性质代谢标记。通过观察通过使用甘油作为葡萄糖前体的实施方式的系统宿主能量代谢的改性来解释未治疗的动物中的体重减轻部分解释。然而,抗生素治疗引发了血浆中的VLDL / HDL比率增加,这可能有助于降低处理过的鸟类中观察到的体重减轻。所有代谢反应都在感染或抗生素治疗时具有微生物群的显着转变。本研究表明感染和抗生素治疗触发可能影响宿主全身能量代谢并引起表型和健康修改的脱敏治疗。

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