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S100-alarmin-induced innate immune programming protects newborn infants from sepsis

机译:S100-Alarmin诱导的先天免疫编程保护来自败血症的新生儿婴儿

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The high risk of neonatal death from sepsis is thought to result from impaired responses by innate immune cells; however, the clinical observation of hyperinflammatory courses of neonatal sepsis contradicts this concept. Using transcriptomic, epigenetic and immunological approaches, we demonstrated that high amounts of the perinatal alarmins S100A8 and S100A9 specifically altered MyD88-dependent proinflammatory gene programs. S100 programming prevented hyperinflammatory responses without impairing pathogen defense. TRIF-adaptor-dependent regulatory genes remained unaffected by perinatal S100 programming and responded strongly to lipopolysaccharide, but were barely expressed. Steady-state expression of TRIF-dependent genes increased only gradually during the first year of life in human neonates, shifting immune regulation toward the adult phenotype. Disruption of this critical sequence of transient alarmin programming and subsequent reprogramming of regulatory pathways increased the risk of hyperinflammation and sepsis. Collectively these data suggest that neonates are characterized by a selective, transient microbial unresponsiveness that prevents harmful hyperinflammation in the delicate neonate while allowing for sufficient immunological protection.
机译:来自败血症的新生儿死亡的高风险被认为是由先天免疫细胞受损的抗拒;然而,新生儿脓毒症对炎症术课程的临床观察与这种概念相矛盾。使用转录组,表观遗传和免疫学方法,我们证明了大量的围产术警报S100A8和S100A9特异性改变了MyD88依赖性促炎基因计划。 S100编程阻止了无损害病原体防御的高炎性反应。 Trif-Adapter依赖的调节基因仍未受到围产期S100编程的影响,并对脂多糖强烈反应,但几乎没有表达。在人类新生儿的生命的第一年生命期间,TRIF依赖性基因的稳态表达仅逐渐增加,将免疫调节转向成人表型。这种临时警报编程的临界序列的破坏以及随后的监管途径重新编程增加了高血清炎症和败血症的风险。集体这些数据表明,新生儿的特征在于一种选择性,瞬时微生物无反应,可防止细腻的新生儿中有害的血红病,同时允许充分的免疫保护。

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