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首页> 外文期刊>Scientific reports. >Transient neonatal antibiotic exposure increases susceptibility to late-onset sepsis driven by microbiota-dependent suppression of type 3 innate lymphoid cells
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Transient neonatal antibiotic exposure increases susceptibility to late-onset sepsis driven by microbiota-dependent suppression of type 3 innate lymphoid cells

机译:短暂的新生儿抗生素暴露会增加由微生物腹膜依赖性抑制3型先天淋巴细胞的微生物毒性抑制的晚期脓毒症的敏感性

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Extended early antibiotic exposure in the neonatal intensive care unit is associated with an increased risk for the development of late-onset sepsis (LOS). However, few studies have examined the mechanisms involved. We sought to determine how the neonatal microbiome and intestinal immune response is altered by transient early empiric antibiotic exposure at birth. Neonatal mice were transiently exposed to broad-spectrum antibiotics from birth for either 3- (SE) or 7-days (LE) and were examined at 14-days-old. We found that mice exposed to either SE or LE showed persistent expansion of Proteobacteria (2 log difference, P??0.01). Further, LE mice demonstrated baseline translocation of E. coli into the liver and spleen and were more susceptible K. pneumoniae-induced sepsis. LE mice had a significant and persistent decrease in type 3 innate lymphoid cells (ILC3) in the lamina propria. Reconstitution of the microbiome with mature microbiota by gavage in LE mice following antibiotic exposure resulted in an increase in ILC3 and partial rescue from LOS. We conclude that prolonged exposure to broad spectrum antibiotics in the neonatal period is associated with persistent alteration of the microbiome and innate immune response resulting in increased susceptibility to infection that may be partially rescued by microbiome reconstitution.
机译:新生儿重症监护病房中的延长早期抗生素暴露与晚期发病败血症(LOS)的发展风险增加有关。然而,很少有研究已经检查了所涉及的机制。我们试图确定在出生时瞬时早期经验抗生素暴露的新生儿微生物组和肠免疫反应如何改变。新生儿小鼠从出生中瞬时暴露于广谱抗生素,以便在3-(SE)或7天(LE),并在14岁时检查。我们发现暴露于SE或Le的小鼠显示出植物的持续扩张(2个数差,p?<0.01)。此外,Le小鼠将大肠杆菌的基线易位展示进入肝脏和脾脏,并且更易受K.肺炎血管诱导的败血症。 Le小鼠在Lamina Propria中的3型先天淋巴细胞(ILC3)的显着且持续的降低。抗生素暴露后Le小鼠的Microbiome与成熟微生物的重建导致ILC3增加,从LOS中增加了ILC3和部分救援。我们得出结论,延长暴露于新生儿期间的广谱抗生素与微生物组和先天免疫应答的持续改变相关,导致可通过微生物组重构部分抵押的感染敏感性增加。

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