Department of Developmental Biology and Center of Regenerative Medicine, Washington University School of Medicine, St. Louis, MO, 63110, USA.
Nantes Université, CHU Nantes, INSERM, CR2TI, UMR 1064, 44000, Nantes, France.
Cell Mol Life Sci. 2022 Nov 25;79(12):604. doi: 10.1007/s00018-022-04549-y.
Trophoblasts are specialized epithelial cells that perform critical functions during blastocyst implantation and mediate maternal-fetal communication during pregnancy. However, our understanding of human trophoblast biology remains limited since access to first-trimester placental tissue is scarce, especially between the first and fourth weeks of development. Moreover, animal models inadequately recapitulate unique aspects of human placental physiology. In the mouse system, the isolation of self-renewing trophoblast stem cells has provided a valuable in vitro model system of placental development, but the derivation of analogous human trophoblast stem cells (hTSCs) has remained elusive until recently. Building on a landmark study reporting the isolation of bona fide hTSCs from blastocysts and first-trimester placental tissues in 2018, several groups have developed methods to derive hTSCs from pluripotent and somatic cell sources. Here we review the biological and molecular properties that define authentic hTSCs, the trophoblast potential of distinct pluripotent states, and methods for inducing hTSCs in somatic cells by direct reprogramming. The generation of hTSCs from pluripotent and somatic cells presents exciting opportunities to elucidate the molecular mechanisms of human placental development and the etiology of pregnancy-related diseases.
滋养层细胞是专门的上皮细胞,在囊胚植入过程中发挥关键作用,并在妊娠期间介导母体-胎儿通讯。然而,由于获取早期胎盘组织稀缺,尤其是在发育的第一周到第四周之间,我们对人类滋养层生物学的理解仍然有限。此外,动物模型不能充分再现人类胎盘生理学的独特方面。在小鼠系统中,自我更新滋养层干细胞的分离提供了一个有价值的胎盘发育体外模型系统,但直到最近才成功获得类似的人类滋养层干细胞(hTSC)。在 2018 年一项具有里程碑意义的研究报告中,从囊胚和早期胎盘组织中分离出真正的 hTSC 后,有几个研究小组已经开发出了从多能性和体细胞来源中分离 hTSC 的方法。在这里,我们综述了定义真正 hTSC 的生物学和分子特性、不同多能性状态的滋养层潜能,以及通过直接重编程诱导体细胞中 hTSC 的方法。从多能性和体细胞中生成 hTSC 为阐明人类胎盘发育的分子机制和妊娠相关疾病的病因提供了令人兴奋的机会。