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Primary Bovine Extra-Embryonic Cultured Cells: A New Resource for the Study of In Vivo Peri-Implanting Phenotypes and Mesoderm Formation

机译:牛原胚外培养的细胞:体内围植入表型和中胚层形成研究的新资源。

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摘要

In addition to nourishing the embryo, extra-embryonic tissues (EETs) contribute to early embryonic patterning, primitive hematopoiesis, and fetal health. These tissues are of major importance for human medicine, as well as for efforts to improve livestock efficiency, but they remain incompletely understood. In bovines, EETs are accessible easily, in large amounts, and prior to implantation. We took advantage of this system to describe, in vitro and in vivo, the cell types present in bovine EETs at Day 18 of development. Specifically, we characterized the gene expression patterns and phenotypes of bovine extra-embryonic ectoderm (or trophoblast; bTC), endoderm (bXEC), and mesoderm (bXMC) cells in culture and compared them to their respective in vivo micro-dissected cells. After a week of culture, certain characteristics (e.g., gene expression) of the in vitro cells were altered with respect to the in vivo cells, but we were able to identify “cores” of cell-type-specific (and substrate-independent) genes that were shared between in vitro and in vivo samples. In addition, many cellular phenotypes were cell-type-specific with regard to extracellular adhesion. We evaluated the ability of individual bXMCs to migrate and spread on micro-patterns, and observed that they easily adapted to diverse environments, similar to in vivo EE mesoderm cells, which encounter different EE epithelia to form chorion, yolk sac, and allantois. With these tissue interactions, different functions arose that were detected in silico and corroborated in vivo at D21–D25. Moreover, analysis of bXMCs allowed us to identify the EE cell ring surrounding the embryonic disc (ED) at D14-15 as mesoderm cells, which had been hypothesized but not shown prior to this study. We envision these data will serve as a major resource for the future in the analysis of peri-implanting phenotypes in response to the maternal metabolism and contribute to subsequent studies of placental/fetal development in eutherians.
机译:除滋养胚胎外,胚外组织(EET)有助于早期胚胎的形成,原始造血和胎儿健康。这些组织对于人类医学以及提高牲畜效率的努力都具有重要意义,但仍不完全了解。在牛中,可以很容易地,大量地且在植入前接近EET。我们利用该系统在体外和体内描述了在发育第18天牛EET中存在的细胞类型。具体来说,我们表征了培养物中牛胚外胚层(或滋养细胞; bTC),内胚层(bXEC)和中胚层(bXMC)细胞的基因表达模式和表型,并将它们与各自的体内微解剖细胞进行了比较。培养一周后,体外细胞的某些特征(例如基因表达)相对于体内细胞发生了改变,但是我们能够鉴定出细胞类型特异性(和底物无关)的“核心”在体外和体内样品之间共享的基因。另外,关于细胞外粘附,许多细胞表型是细胞类型特异性的。我们评估了单个bXMC在微模式上迁移和扩散的能力,并观察到它们很容易适应各种环境,类似于体内EE中胚层细胞,后者遇到不同的EE上皮形成绒毛膜,卵黄囊和尿囊。通过这些组织相互作用,出现了不同的功能,这些功能已在计算机中检测到,并在D21-D25时在体内得到证实。此外,对bXMC的分析使我们能够将D14-15处胚盘(ED)周围的EE细胞环鉴定为中胚层细胞,这已被假设但在本研究之前未显示。我们设想这些数据将作为未来对母亲围产期表型分析的主要资源,以响应母亲的新陈代谢,并为随后在以太子中胎盘/胎儿发育的研究做出贡献。

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