胎膜中胶原纤维间键的焓

Y. Marom, S. Gengrinovitch, E. Shalev, D. Shilo
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引用次数: 1

摘要

在怀孕期间,胎膜(FM)受到机械拉伸,可能导致早产。FM的结构完整性是由其胶原层维持的。胶原原纤维之间分子键的断开和重连接是控制FM中不可逆的力学和超分子变化的基本过程。在此,我们研究了离体人FM纤维间键的激活焓。我们分析了不可逆变形的应变率和温度依赖的FM经受膨胀试验,其中应用的机械条件类似于那些经历的FM之前和在劳动收缩的开始。得到的纤维间键的活化焓值与典型的多价离子键的焓值相匹配,暗示了Ca和Mg等离子在妊娠和分娩过程中可能发挥的另一个重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enthalpy of Collagen Interfibrillar Bonds in Fetal Membranes
During pregnancy, the fetal membrane (FM) is subjected to mechanical stretching that may result in preterm labor. The structural integrity of the FM is maintained by its collagenous layer. The disconnection and reconnection of molecular bonds between collagen fibrils are the fundamental processes that govern the irreversible mechanical and supermolecular changes in the FM. Here, we study the activation enthalpy of interfibrillar bonds in ex-vivo human FM. We analyze the strain-rate and temperature dependence of the irreversible deformations in FM subjected to inflation tests, which apply mechanical conditions similar to those experienced by the FM prior to and during the initiation of labor contractions. The obtained activation enthalpy of interfibrillar bonds matches the typical enthalpy values of polyvalent ionic bonds, implying on another important role that ions like Ca and Mg may play in the gestation and labor.
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