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Review: Human trophoblast fusion and differentiation: lessons from trisomy 21 placenta.

机译:综述:人类滋养层细胞的融合和分化:21三体胎盘的教训。

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The syncytiotrophoblast layer plays a major role throughout pregnancy, since it is the site of numerous placental functions, including ion and nutrient exchange and the synthesis of steroid and peptide hormones required for fetal growth and development. Inadequate formation and regeneration of this tissue contributes to several pathologies of pregnancy such as intrauterine growth restriction and preeclampsia, which may lead to iatrogenic preterm delivery in order to prevent fetal death and maternal complications. Syncytiotrophoblast formation can be reproduced in?vitro using different models. For the last ten years we have routinely purified villous cytotrophoblastic cells (CT) from normal first, second and third trimester placentas and from gestational age-matched Trisomy 21 placentas. We cultured villous CT on plastic dishes to follow the molecular and biochemical aspects of their morphological and functional differentiation. Taking advantage of this unique collection of samples, we here discuss the concept that trophoblast fusion and functional differentiation may be two differentially regulated processes, which are linked but quite distinct. We highlight the major role of mesenchymal-trophoblast cross talk in regulating trophoblast cell fusion. We suggest that the oxidative status of the trophoblast may regulate glycosylation of proteins, including hCG, and thereby modulate major trophoblast cell functions.
机译:滋养层滋养层在整个妊娠过程中起着重要作用,因为它是众多胎盘功能的场所,包括离子和营养交换以及胎儿生长发育所需的类固醇和肽激素的合成。该组织的形成和再生不足会导致多种妊娠状况,例如子宫内生长受限和先兆子痫,这可能会导致医源性早产,以防止胎儿死亡和产妇并发症。合体滋养层细胞的形成可以使用不同的模型体外复制。在过去的十年中,我们常规从正常的前三个,三个月和三个月胎盘以及与胎龄匹配的Trisomy 21胎盘中纯化绒毛滋养细胞(CT)。我们在塑料培养皿上培养绒毛CT,以追踪其形态和功能分化的分子和生化方面。利用这一独特的样本集合,我们在这里讨论这样的概念,即滋养层融合和功能分化可能是两个差异调节的过程,它们相互联系但截然不同。我们强调间充质-滋养细胞交叉谈话在调节滋养细胞融合中的主要作用。我们建议,滋养层细胞的氧化状态可能调节包括hCG在内的蛋白质的糖基化,从而调节主要的滋养层细胞功能。

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