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Evolution of Gut Microbiome and Metabolome in Suspected Necrotizing Enterocolitis: A Case-Control Study

机译:肠道微生物组和代谢物中涉嫌坏死性小肠结肠炎的演变:案例对照研究

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摘要

Background: Necrotizing enterocolitis (NEC) is a devastating condition in preterm infants due to multiple factors, including gut microbiota dysbiosis. NEC development is poorly understood, due to the focus on severe NEC (NEC-2/3). Methods: We studied the gut microbiota, microbiome and metabolome of children with suspected NEC (NEC-1). Results: NEC-1 gut microbiota had a higher abundance of the Streptococcus (second 10-days of life) and Staphylococcus (third 10-days of life) species. NEC-1 children showed a microbiome evolution in the third 10-days of life being the most divergent, and were associated with a different metabolomic signature than in healthy children. The NEC-1 microbiome had increased glycosaminoglycan degradation and lysosome activity by the first 10-days of life, and was more sensitive to childbirth, low birth weight and gestational age, than healthy microbiome. NEC-1 fecal metabolome was more divergent by the second month of life. Conclusions: NEC-1 gut microbiota and microbiome modifications appear more distinguishable by the third 10-days of life, compared to healthy children. These data identify a precise window of time (i.e., the third 10-days of life) and provide microbial targets to fight/blunt NEC-1 progression.
机译:背景:由于多种因素,包括肠道微生物症失育症,坏死性小肠结肠炎(NEC)是早产儿的破坏性条件。由于重点是严重的NEC(NEC-2/3),NEC发展很差。方法:我们研究了疑似NEC(NEC-1)的肠道微生物肿块,微生物组和患儿的代谢物。结果:NEC-1 GUT Microbiota具有较高丰富的链球菌(生命的第二个10天)和葡萄球菌(生命中第三次10天)。 NEC-1儿童在生命中最为不同的第三个10天显示微生物胺进化,并且与不同的代谢组签名相关,而不是健康的儿童。 NEC-1微生物组在前10天的生命中增加了糖胺聚糖降解和溶酶体活性,并且比健康的微生物组更敏感,低出生体重和妊娠期。 NEC-1粪便代谢物在第二个月的生命中更为不同。结论:与健康儿童相比,NEC-1肠道微生物和微生物微生物和微生物组织更具区别。这些数据识别精确的时间窗口(即,生命的第三天,第三天),并提供用于对抗/钝的NEC-1进展的微生物目标。

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