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Oxidative Stress Damage as a Detrimental Factor in Preterm Birth Pathology

机译:氧化应激损害是早产病理中的有害因素

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Normal term and spontaneous preterm births (PTB) are documented to be associated with oxidative stress (OS), and imbalances in the redox system (balance between pro- and antioxidant) have been reported in the maternal–fetal intrauterine compartments. The exact mechanism of labor initiation either at term or preterm by OS is still unclear, and this lack of understanding can partially be blamed for failure of antioxidant supplementation trials in PTB prevention. Based on recent findings from our laboratory, we postulate heterogeneity in host OS response. The physiologic (at term) and pathophysiologic (preterm) pathways of labor are not mediated by OS alone but by OS-induced damage to intrauterine tissues, especially fetal membranes of the placenta. OS damage affects all major cellular elements in the fetal cells, and this damage promotes fetal cell senescence (aging). The aging of the fetal cells is predominated by p38 mitogen activated kinase (p38MAPK) pathways. Senescing cells generate biomolecular signals that are uterotonic, triggering labor process. The aging of fetal cells is normal at term. However, aging is premature in PTB, especially in those PTBs complicated by preterm premature rupture of the membranes, where elements of redox imbalances and OS damage are more dominant. We postulate that fetal cell senescence signals generated by OS damage are likely triggers for labor. This review highlights the mechanisms involved in senescence development at term and preterm by OS damage and provides insight into novel fetal signals of labor initiation pathways.
机译:正常足月和自然早产(PTB)被证明与氧化应激(OS)有关,并且已报道母体-胎儿宫腔内氧化还原系统的失衡(前和抗氧化剂之间的平衡)。 OS在足月或早产时开始分娩的确切机制仍不清楚,这种缺乏了解可以部分归因于PTB预防中抗氧化剂补充试验的失败。根据我们实验室的最新发现,我们推测宿主OS响应存在异质性。分娩的生理学(足月)和病理生理学(早产)途径并非仅由OS介导,而是由OS引起的对子宫内组织尤其是胎盘胎膜的损伤介导。 OS损害会影响胎儿细胞中的所有主要细胞成分,这种损害会促进胎儿细胞衰老(老化)。胎儿细胞的衰老主要由p38丝裂原活化激酶(p38MAPK)途径主导。感觉细胞产生子宫内的生物分子信号,从而触发分娩过程。足月胎儿细胞的衰老是正常的。但是,PTB的老化还为时过早,尤其是那些因膜过早破裂而复杂化的PTB,在这些膜中氧化还原失衡和OS损伤的因素更为明显。我们假设OS损伤产生的胎儿细胞衰老信号可能是引产的诱因。这篇综述着重介绍了OS损伤导致足月和早产衰老发展的机制,并对新的胎儿分娩途径的信号提供了见识。

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