首页> 美国卫生研究院文献>Journal of Biomedical Science >Y-27632 enhances differentiation of blastocyst like cystic human embryoid bodies to endocrinologically active trophoblast cells on a biomimetic platform
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Y-27632 enhances differentiation of blastocyst like cystic human embryoid bodies to endocrinologically active trophoblast cells on a biomimetic platform

机译:Y-27632在仿生平台上增强胚泡样囊胚样人胚囊向内分泌活性滋养细胞的分化

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摘要

Trophoblast differentiation and formation of the placenta are important events linked to post-implantation embryonic development. Models mimicking the biology of trophoblast differentiation in a post-implantation maternal microenvironment are needed for understanding disorders like placental-ischemia or for applications in drug-screening, and would help in overcoming the ethical impasse on using human embryos for such research. Here we attempt to create such a model by using embryoid bodies (EBs) and a biomimetic platform composed of a bilayer of fibronectin and gelatin on top of low-melting agarose. Using this model we test the hypothesis that cystic-EBs (day 30) that resemble blastocysts morphologically, are better sources as compared to noncytic EBs (day 10), for functional trophoblast differentiation; and that the Rho kinases inhibitor Y27632 can enhance this differentiation. Non/cytic EBs with/out Y27632 were grown on this platform for 28 days, and screened from secretion and expression of trophoblast and other lineage markers using ECLIA, RT-PCR, and Immunofluorescence. All EBs attached on this surface and rapidly proliferated into hCG and progesterone (P2) secreting functional trophoblast cells. However, the cells derived from cytic-EBs and cytic-EBs+ Y27632 showed the maximum secretion of these hormones and expressed IGF2, supporting our hypothesis. Also Y27632 reduced extraembryonic endoderm and trophoblast lineage differentiation from early noncystic-EBs, whereas, it specifically enhanced the induction of trophoblast and multinucleated syncitiotrophoblast differentiation from late cystic-EBs. In vivo trophoblast differentiation can be replicated in fibronectin based biomaterials, using cytic-EBs and by maneuvering the Rho-ROCK pathways. Response of EBs to a compound may vary temporally, and determination of their right stage is crucial for applications in directed-differentiation or drug-screening.
机译:滋养细胞的分化和胎盘的形成是与植入后胚胎发育有关的重要事件。需要模型来模拟植入后母体微环境中的滋养细胞分化生物学,以了解胎盘缺血等疾病或用于药物筛选,并有助于克服使用人类胚胎进行此类研究时的道德僵局。在这里,我们尝试通过使用类胚体(EBs)和由纤连蛋白和明胶双层构成的仿生平台在低熔点琼脂糖上创建这种模型。使用该模型,我们检验了以下假设:在形态上类似于胚泡的囊性EB(第30天)与非囊性EB(第10天)相比是功能性滋养层分化更好的来源。 Rho激酶抑制剂Y27632可以增强这种分化。具有/没有Y27632的非/囊性EB在该平台上生长28天,并使用ECLIA,RT-PCR和免疫荧光从滋养细胞和其他谱系标记的分泌和表达中进行筛选。所有EB都附着在该表面上,并迅速增殖为hCG和孕激素(P2),分泌功能性滋养层细胞。然而,源自细胞性EBs和细胞性EBs + Y27632的细胞显示出这些激素的最大分泌并表达了IGF2,支持了我们的假设。 Y27632还减少了早期非囊性EB的胚外内胚层和滋养层谱系分化,而它特别增强了晚期囊性EB诱导的滋养层和多核合体滋养层细胞分化。体内滋养细胞的分化可以在基于纤连蛋白的生物材料中复制,可以使用细胞性EB并通过操纵Rho-ROCK途径。 EB对化合物的反应可能会随时间变化,确定其正确阶段对于定向分化或药物筛选至关重要。

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