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首页> 外文期刊>Placenta >The physiology of fetal membrane rupture: insight gained from the determination of physical properties.
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The physiology of fetal membrane rupture: insight gained from the determination of physical properties.

机译:胎膜破裂的生理学:从确定物理性质中获得的见识。

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Premature rupture of the fetal membranes is a major cause of preterm birth and its associated infant morbidity and mortality. Recently, it has become clear that rupture of the fetal membranes, term or preterm, is not merely the result of the stretch and shear forces of uterine contractions, but is, in significant part, the consequence of a programmed weakening process. Work in the rat model has demonstrated that collagen remodeling, with activation of matrix metalloproteinases (MMPs), and apoptosis increase markedly in the amnion at end-gestation, suggesting that these processes are involved in fetal membrane weakening. We have developed fetal membrane strength testing equipment and a systematic tissue sampling methodology that has allowed us to demonstrate that term, non-labored, fetal membranes have a zone of weakness overlying the cervix, which contains biochemical markers of both collagen remodeling and apoptosis. These findings provide strong support for the concept of programmed fetal membrane weakening prior to labor. Our model has also been used to establish the physical properties of individual fetal membrane components (amnion, chorion), determine the sequence of events during the fetal membrane rupture process, and demonstrate that treatment of fetal membranes with TNF or IL-1beta, in vitro, induces weakness and the identical biochemical markers of collagen remodeling and apoptosis seen in the physiological weak zone. The ability to simultaneously correlate macroscopic physical properties with histological and biochemical fetal membrane characteristics, presents a unique perspective on the physiology of fetal membrane rupture.
机译:胎膜早破是早产及其相关婴儿发病率和死亡率的主要原因。最近,已经清楚的是,胎膜破裂,足月或早产,不仅是子宫收缩的拉伸力和剪切力的结果,而且在很大程度上是程序性弱化过程的结果。在大鼠模型中的工作表明,在妊娠末期羊膜中胶原蛋白的重塑以及基质金属蛋白酶(MMPs)的激活和凋亡明显增加,表明这些过程与胎膜的衰弱有关。我们已经开发了胎膜强度测试设备和系统的组织采样方法,这使我们能够证明长期未胎的胎膜在宫颈上覆有薄弱区,其中包含胶原蛋白重塑和凋亡的生化标记。这些发现为分娩前程序性胎膜弱化的概念提供了有力的支持。我们的模型还用于建立单个胎膜成分(羊膜,绒毛膜)的物理特性,确定胎膜破裂过程中的事件顺序,并证明在体外用TNF或IL-1beta处理胎膜诱导弱点,并在生理薄弱区看到相同的胶原重塑和凋亡的生化标记。同时将宏观物理特性与胎儿组织学和生化特征相关联的能力,对胎儿膜破裂的生理学提出了独特的见解。

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