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Human trophoblast stem cell self-renewal and differentiation: Role of decorin

机译:人滋养层干细胞的自我更新和分化:核心蛋白聚糖的作用

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摘要

The origin and regulation of stem cells sustaining trophoblast renewal in the human placenta remain unclear. Decorin, a leucine-rich proteoglycan restrains trophoblast proliferation, migration/invasiveness and endovascular differentiation, and local decorin overproduction is associated with preeclampsia (PE). Here, we tested the role of decorin in human trophoblast stem cell self-renewal and differentiation, using two models: an immortalized first trimester trophoblast cell line HTR-8/SVneo (HTR) and freshly isolated primary trophoblast (p-trophoblast) from early first trimester (6–9 weeks) placentas. Self-renewal capacity was measured by spheroid forming ability of single cells on ultra-low attachment plates for multiple generations. Markers of embryonic stem (ES) cells, trophoblast stem (TS) cells and trophoblast were used to identify stem cell hierarchy. Differentiation markers for syncytial and extravillous (EVT) pathways were employed to identify differentiated cells. Bewo cells were additionally used to explore DCN effects on syncytialization. Results reveal that the incidence of spheroid forming stem-like cells was 13–15% in HTR and 0.1–0.4%, in early first trimester p-trophoblast, including a stem cell hierarchy of two populations of ES and TS-like cells. DCN restrained ES cell self-renewal, promoted ES to TS transition and maintenance of TS cell stem-ness, but inhibited TS cell differentiation into both syncytial and EVT pathways.
机译:在人胎盘中维持滋养细胞更新的干细胞的起源和调控尚不清楚。 Decorin是一种富含亮氨酸的蛋白聚糖,可抑制滋养层细胞的增殖,迁移/侵袭和血管内分化,并且局部得体的过高产量与先兆子痫(PE)相关。在这里,我们使用两种模型测试了香精素在人类滋养层干细胞自我更新和分化中的作用:永生化的早孕滋养层细胞系HTR-8 / SVneo(HTR)和从早期分离的新鲜分离的原代滋养层(p-滋养层)头三个月(6-9周)胎盘。自我更新能力是通过单细胞在超低附着平板上形成多个世代的球状体形成能力来衡量的。胚胎干细胞(ES),滋养层干细胞(TS)和滋养层的标志物用于鉴定干细胞的层次结构。合胞体和绒毛外(EVT)途径的分化标志物被用来识别分化的细胞。另外,还使用Bewo细胞探索DCN对合胞体细胞的作用。结果显示,在孕早期早期的滋养层细胞中,形成球状干细胞的发生率在HTR中为13–15%,在早期为0.1–0.4%,包括两个ES和TS样细胞群体的干细胞等级。 DCN抑制ES细胞的自我更新,促进ES向TS的过渡和TS细胞干性的维持,但抑制TS细胞分化为合胞和EVT途径。

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