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Reduced IL-10 Production in Fetal Type II Epithelial Cells Exposed to Mechanical Stretch Is Mediated via Activation of IL-6-SOCS3 Signaling Pathway

机译:减少IL-10生产中的胎儿的II型上皮细胞通过IL-6-sOCs3信号途径的活化暴露于机械拉伸介导

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摘要

An imbalance between pro-inflammatory and anti-inflammatory cytokines is a key factor in the lung injury of premature infants exposed to mechanical ventilation. Previous studies have shown that lung cells exposed to stretch produces reduced amounts of the anti-inflammatory cytokine IL-10. The objective of these studies was to analyze the signaling mechanisms responsible for the decreased IL-10 production in fetal type II cells exposed to mechanical stretch. Fetal mouse type II epithelial cells isolated at embryonic day 18 were exposed to 20% stretch to simulate lung injury. We show that IL-10 receptor gene expression increased with gestational age. Mechanical stretch decreased not only IL-10 receptor gene expression but also IL-10 secretion. In contrast, mechanical stretch increased release of IL-6. We then investigated IL-10 signaling pathway-associated proteins and found that in wild-type cells, mechanical stretch decreased activation of JAK1 and TYK2 and increased STAT3 and SOCS3 activation. However, opposite effects were found in cells isolated from IL-10 knockout mice. Reduction in IL-6 secretion by stretch was observed in cells isolated from IL-10 null mice. To support the idea that stretch-induced SOCS3 expression via IL-6 leads to reduced IL-10 expression, siRNA-mediated inhibition of SOCS3 restored IL-10 secretion in cells exposed to stretch and decreased IL-6 secretion. Taken together, these studies suggest that the inhibitory effect of mechanical stretch on IL-10 secretion is mediated via activation of IL-6-STAT3-SOCS3 signaling pathway. SOCS3 could be a therapeutic target to increase IL-10 production in lung cells exposed to mechanical injury.
机译:促炎和抗炎细胞因子之间的不平衡是暴露于机械通气的早产儿肺部损伤的关键因素。先前的研究表明,处于拉伸状态的肺细胞产生的抗炎细胞因子IL-10数量减少。这些研究的目的是分析导致暴露于机械性拉伸的胎儿II型细胞中IL-10产生减少的信号传导机制。将在胚胎第18天分离的II型胎儿小鼠上皮细胞暴露于20%拉伸以模拟肺损伤。我们显示IL-10受体基因表达随胎龄增加。机械拉伸不仅降低IL-10受体基因表达,而且降低IL-10分泌。相反,机械拉伸增加了IL-6的释放。然后,我们研究了与IL-10信号通路相关的蛋白,发现在野生型细胞中,机械拉伸降低了JAK1和TYK2的激活,并增加了STAT3和SOCS3的激活。但是,在从IL-10基因敲除小鼠分离的细胞中发现了相反的作用。在从IL-10无效小鼠分离的细胞中观察到通过拉伸的IL-6分泌减少。为了支持通过IL-6拉伸诱导的SOCS3表达导致IL-10表达降低的想法,siRNA介导的SOCS3抑制作用使暴露于拉伸的细胞恢复了IL-10分泌,并降低了IL-6分泌。综上所述,这些研究表明机械拉伸对IL-10分泌的抑制作用是通过激活IL-6-STAT3-SOCS3信号通路来介导的。 SOCS3可能是增加遭受机械损伤的肺细胞中IL-10产生的治疗靶标。

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