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孕早期胎盘新型滋养层侧群细胞的分离与鉴定

Isolation and characterisation of a novel trophoblast side-population from first trimester placentae.

作者信息

James J L, Hurley D G, Gamage T K J B, Zhang T, Vather R, Pantham P, Murthi P, Chamley L W

机构信息

Department of Obstetrics and GynaecologyFMHS, University of Auckland, 85 Park Road, Grafton, Auckland 1023, New ZealandSystems Biology LaboratoryMelbourne School of Engineering, University of Melbourne, Parkville, Melbourne, Victoria 3010, AustraliaAuckland District Health BoardGrafton, Auckland 1023, New ZealandDepartment of Perinatal MedicinePregnancy Research Centre, and University of Melbourne, Melbourne, Victoria, AustraliaDepartment of Obstetrics and GynaecologyThe Royal Women's Hospital, 20 Flemington Road, Parkville, Melbourne, Victoria, Australia

Department of Obstetrics and GynaecologyFMHS, University of Auckland, 85 Park Road, Grafton, Auckland 1023, New ZealandSystems Biology LaboratoryMelbourne School of Engineering, University of Melbourne, Parkville, Melbourne, Victoria 3010, AustraliaAuckland District Health BoardGrafton, Auckland 1023, New ZealandDepartment of Perinatal MedicinePregnancy Research Centre, and University of Melbourne, Melbourne, Victoria, AustraliaDepartment of Obstetrics and GynaecologyThe Royal Women's Hospital, 20 Flemington Road, Parkville, Melbourne, Victoria, Australia.

出版信息

Reproduction. 2015 Nov;150(5):449-62. doi: 10.1530/REP-14-0646. Epub 2015 Aug 6.

Abstract

The placenta is responsible for all nutrient and gas exchange between mother and baby during pregnancy. The differentiation of specialised placental epithelial cells called trophoblasts is essential for placental function, but we understand little about how these populations arise. Mouse trophoblast stem cells have allowed us to understand many of the factors that regulate murine trophoblast lineage development, but the human placenta is anatomically very different from the mouse, and it is imperative to isolate a human trophoblast stem cell to understand human placental development. Here we have developed a novel methodology to isolate a Hoechst side-population of trophoblasts from early gestation placentae and compared their transcriptome to differentiated trophoblast populations (cytotrophoblasts and extravillous trophoblasts) using microarray technology. Side-population trophoblasts clustered as a transcriptomically distinct population but were more closely related to cytotrophoblasts than extravillous trophoblasts. Side-population trophoblasts up-regulated a number of genes characteristic of trophectoderm and murine trophoblast stem cells in comparison to cytotrophoblasts or extravillous trophoblasts and could be distinguished from both of these more mature populations by a unique set of 22 up-regulated genes, which were enriched for morphogenesis and organ development and the regulation of growth functions. Cells expressing two of these genes (LAMA2 and COL6A3) were distributed throughout the cytotrophoblast layer at the trophoblast/mesenchymal interface. Comparisons to previously published trophoblast progenitor populations suggest that the side-population trophoblasts isolated in this work are a novel human trophoblast population. Future work will determine whether these cells exhibit functional progenitor/stem cell attributes.

摘要

胎盘负责孕期母婴之间所有的营养物质和气体交换。一种称为滋养层细胞的特殊胎盘上皮细胞的分化对于胎盘功能至关重要,但我们对这些细胞群的产生方式了解甚少。小鼠滋养层干细胞使我们能够了解许多调节小鼠滋养层谱系发育的因素,但人类胎盘在解剖结构上与小鼠有很大不同,因此分离出人类滋养层干细胞对于理解人类胎盘发育至关重要。在此,我们开发了一种新方法,从早期妊娠胎盘分离出Hoechst侧群滋养层细胞,并使用微阵列技术将其转录组与分化的滋养层细胞群(细胞滋养层细胞和绒毛外滋养层细胞)进行比较。侧群滋养层细胞聚集成一个转录组学上独特的群体,但与细胞滋养层细胞的关系比与绒毛外滋养层细胞的关系更密切。与细胞滋养层细胞或绒毛外滋养层细胞相比,侧群滋养层细胞上调了许多滋养外胚层和小鼠滋养层干细胞特有的基因,并且可以通过一组独特的22个上调基因与这两个更成熟的群体区分开来,这些基因在形态发生、器官发育以及生长功能调节方面富集。表达其中两个基因(LAMA2和COL6A3)的细胞分布在滋养层/间充质界面的整个细胞滋养层中。与之前发表的滋养层祖细胞群的比较表明,这项研究中分离出的侧群滋养层细胞是一种新的人类滋养层细胞群。未来的工作将确定这些细胞是否具有功能性祖细胞/干细胞特性。

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