Rachmilewitz J, Gonik B, Goshen R, Ariel I, Schneider T, Eldar-Geva T, de Groot N, Hochberg A
Department of Biological Chemistry, Silberman Institute of Life Sciences, Hebrew University, Jerusalem, Israel.
Cell Growth Differ. 1993 May;4(5):395-402.
Differentiation of the human placental trophoblast cell involves a multistep process, with the generation of several distinct types of intermediate cytotrophoblast cells. Using a short term in vitro cell culture system and centrifugal elutriation, we studied the isolation and morphological and biochemical differentiation of these separated intermediate cell populations. Freshly isolated cell fractions, incubated for 24 h, are heterogeneous in their differentiation stages as determined by the secretion of the proteins chorionic gonadotropin alpha and beta, human placental lactogen, and pregnancy specific beta 1-glycoprotein. Maintenance in cell culture allows for the further differentiation of these intermediate cells and for syncytium formation. With the use of sequential trypsinizations, our data also suggest the parallel differentiation of cytotrophoblast cells into two distinct subsets: one which, through differentiation, gets committed to syncytium formation, and the other, which remains mononuclear despite high degrees of biochemical differentiation. These latter cells retain the capacity for syncytium formation when reintroduced into appropriate culture conditions. These findings refine the use of the term "intermediate cell" by previous investigators. We suggest that our in vitro system defines normal intermediate stages of trophoblast differentiation, and also serves as a model to simulate adverse conditions of syncytial degeneration or injury.
人胎盘滋养层细胞的分化是一个多步骤过程,会产生几种不同类型的中间型细胞滋养层细胞。利用短期体外细胞培养系统和离心淘析技术,我们研究了这些分离出的中间细胞群体的分离以及形态和生化分化情况。新鲜分离的细胞组分在培养24小时后,根据绒毛膜促性腺激素α和β、人胎盘催乳素以及妊娠特异性β1-糖蛋白的分泌情况判断,其分化阶段是异质性的。在细胞培养中维持培养可使这些中间细胞进一步分化并形成合体滋养层。通过连续胰蛋白酶消化处理,我们的数据还表明细胞滋养层细胞平行分化为两个不同的亚群:一个亚群通过分化致力于形成合体滋养层,另一个亚群尽管生化分化程度很高但仍保持单核状态。当重新置于合适的培养条件下时,后一类细胞仍保留形成合体滋养层的能力。这些发现完善了之前研究者对“中间细胞”这一术语的使用。我们认为,我们的体外系统定义了滋养层分化的正常中间阶段,同时也可作为模拟合体滋养层变性或损伤等不利情况的模型。