Morey Robert, Soncin Francesca, Kallol Sampada, Sah Nirvay, Manalo Zoe, Bui Tony, Slamecka Jaroslav, Cheung Virginia Chu, Pizzo Don, Requena Daniela F, Chang Ching-Wen, Farah Omar, Kittle Ryan, Lam Kelly, Meads Morgan, Horii Mariko, Fisch Kathleen M, Parast Mana M
Department of Pathology, School of Medicine, University of California San Diego, La Jolla, 92093, CA, USA.
Sanford Consortium for Regenerative Medicine, La Jolla, 92093, CA, USA.
Res Sq. 2025 Jun 11:rs.3.rs-6797967. doi: 10.21203/rs.3.rs-6797967/v1.
Cytotrophoblast (CTB) of the early gestation human placenta are bipotent progenitor epithelial cells, which can differentiate into invasive extravillous trophoblast (EVT) and multinucleated syncytiotrophoblast (STB). Trophoblast stem cells (TSC), derived from early first trimester placentae, have also been shown to be bipotential; however, their cell-of-origin has not been identified. In this study, we set out to probe the transcriptional diversity of early and late first trimester villous CTB (vCTB) and compare these to TSC. To this end, we performed single-cell RNA sequencing (scRNA-seq) on placental villous tissue from early (6-8 weeks) and late (12-14 weeks) first trimester placentae; we also evaluated CTB within basal (maternal) and chorionic (fetal) regions of early first trimester placenta, both by scRNA-seq and GeoMx-based spatial transcriptomics. Finally, we performed scRNA-seq on three TSC lines, derived from 6-8 week gestation placentae, as well as on early first trimester CTB at several timepoints during TSC derivation. We found notable distinctions within CTB clusters based on gestational age, further influenced by location near the basal or chorionic plates. We identified trophoblast states representing "initial state" vCTB ( CTB progenitors), as well as additional CTB subtypes, precursor STB, and precursor and mature EVT. CTB progenitors were enriched in early first trimester placentae at the basal plate; overall, basal plate CTB were biased toward EVT, and chorionic plate CTB toward STB, precursors. Clustering and trajectory inference analysis indicated that TSC were most like EVT precursor cells. In fact, vCTB lost their "initial state" markers, including PAGE4, as they transitioned to TSC during culture. This was confirmed by flow cytometric analysis of 6 different TSC lines, which showed uniform expression of proximal column markers ITGA2 and ITGA5. Additionally, we found that ITGA5 CTB could be plated in 2D, forming only EVT upon spontaneous differentiation, but failed to form self-renewing organoids; conversely, ITGA5 CTB could not be plated in 2D, but readily formed organoids. Our findings suggest that distinct CTB states exist in different regions of the placenta as early as six weeks gestation and that current TSC lines most closely resemble ITGA5 CTB, biased toward the EVT lineage.
早孕人类胎盘的细胞滋养层(CTB)是双能祖上皮细胞,可分化为侵袭性绒毛外滋养层(EVT)和多核合体滋养层(STB)。源自孕早期胎盘的滋养层干细胞(TSC)也已被证明具有双能性;然而,它们的细胞起源尚未确定。在本研究中,我们着手探究孕早期早期和晚期绒毛CTB(vCTB)的转录多样性,并将其与TSC进行比较。为此,我们对孕早期早期(6 - 8周)和晚期(12 - 14周)胎盘的绒毛组织进行了单细胞RNA测序(scRNA-seq);我们还通过scRNA-seq和基于GeoMx的空间转录组学评估了孕早期早期胎盘基底层(母体)和绒毛膜(胎儿)区域内的CTB。最后,我们对源自孕6 - 8周胎盘的三条TSC系以及TSC衍生过程中几个时间点的孕早期早期CTB进行了scRNA-seq。我们发现基于胎龄,CTB簇内存在显著差异,且受基底板或绒毛膜板附近位置的进一步影响。我们鉴定出代表“初始状态”vCTB(CTB祖细胞)的滋养层状态,以及其他CTB亚型、前体STB和前体及成熟EVT。CTB祖细胞在孕早期早期胎盘的基底板中富集;总体而言,基底板CTB倾向于EVT,而绒毛膜板CTB倾向于STB前体。聚类和轨迹推断分析表明,TSC最类似于EVT前体细胞。事实上,vCTB在培养过程中转变为TSC时失去了其“初始状态”标记,包括PAGE4。对6条不同TSC系的流式细胞术分析证实了这一点,该分析显示近端柱状标记ITGA2和ITGA5表达一致。此外,我们发现ITGA5 CTB可以在二维培养,自发分化时仅形成EVT,但无法形成自我更新的类器官;相反,ITGA5 CTB无法在二维培养,但很容易形成类器官。我们的研究结果表明,早在妊娠六周时,胎盘不同区域就存在不同的CTB状态,且目前的TSC系与ITGA5 CTB最为相似,倾向于EVT谱系。