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Caspase-mediated apoptosis of trophoblasts in term human placental villi is restricted to cytotrophoblasts and absent from the multinucleated syncytiotrophoblast

机译:人胎盘绒毛中胱天蛋白酶介导的滋养层细胞凋亡仅限于滋养细胞而多核合体滋养层细胞则不存在

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摘要

Human placental villi are surfaced by a multinucleated and terminally differentiated epithelium, the syncytiotrophoblast, with a subjacent layer of mononucleated cytotrophoblasts that can divide and fuse to replenish the syncytiotrophoblast. The objectives of this study were i) to develop an approach to definitively identify and distinguish cytotrophoblasts from the syncytiotrophoblast, ii) to unambiguously determine the relative susceptibility of villous cytotrophoblasts and syncytiotrophoblast to constitutive and stress-induced apoptosis mediated by caspases, and iii) to understand the progression of apoptosis in villous trophoblasts. Confocal microscopy with co-staining for E-cadherin and DNA allowed us to clearly distinguish the syncytiotrophoblast from cytotrophoblasts and identified that many cytotrophoblasts are deeply interdigitated into the syncytiotrophoblast. Staining for specific markers of caspase-mediated apoptosis indicate that apoptosis occurs readily in cytotrophoblasts but is remarkably inhibited in the syncytiotrophoblast. To determine if an apoptotic cell or cell fragment was from a cytotrophoblast or syncytiotrophoblast, we found co-staining with E-cadherin along with a marker for apoptosis was essential: in the absence of E-cadherin staining, apoptotic cytotrophoblasts would easily be mistaken as representing localized regions of apoptosis in the syncytiotrophoblast. Regions with perivillous fibrin-containing fibrinoid contain the remnants of trophoblast apoptosis, and we propose this apoptosis occurs only after physical isolation of a region of the syncytium from the main body of the syncytium. We propose models for the progression of apoptosis in villous cytotrophoblasts and for why caspase-mediated apoptosis does not occur within the syncytium of placental villi.
机译:人胎盘绒毛被多核和终末分化的上皮,合体滋养层细胞表面覆盖,在其下一层单核滋养层细胞可以分裂并融合以补充合体滋养层细胞。这项研究的目的是:i)开发一种方法,以从合体滋养层细胞中确定和区分细胞滋养层,ii)明确确定绒毛细胞滋养层和合体滋养层细胞对由胱天蛋白酶介导的组成型和应激诱导的细胞凋亡的相对敏感性,以及了解绒毛滋养层细胞凋亡的进程。共聚焦显微镜与E-钙粘蛋白和DNA的共染色使我们能够清楚地将合体滋养层细胞与成细胞滋养层区分开,并鉴定出许多成细胞滋养层被深交指成合体滋养层细胞。对半胱天冬酶介导的凋亡的特定标记进行染色表明,凋亡在细胞滋养细胞中很容易发生,但在合体滋养细胞中明显受到抑制。为了确定凋亡细胞或细胞碎片是来自滋养细胞还是合胞体滋养细胞,我们发现将E-钙粘蛋白与细胞凋亡标记物同时染色是必不可少的:在没有E-钙粘蛋白染色的情况下,凋亡的细胞滋养层很容易被误认为是代表合体滋养层细胞凋亡的局部区域。含有周围纤维蛋白的纤维蛋白样蛋白的区域含有滋养细胞凋亡的残余物,我们提出这种凋亡仅在从合体主体中物理分离出合体区域后才发生。我们提出了绒毛细胞滋养细胞凋亡过程的模型,以及为什么胎盘绒毛合胞体中不发生胱天蛋白酶介导的凋亡的模型。

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