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Trophoblast differentiation in vitro: Establishment and characterisation of a serum-free culture model for murine secondary trophoblast giant cells

机译:体外滋养层分化:小鼠继发滋养层巨细胞无血清培养模型的建立和表征

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摘要

Differentiation of trophoblast giant cells is an early event during the process of murine embryo implantation. However, differentiation of secondary trophoblast giant cells in the rodent is still only partially understood, probably because of the lack of suitable in vitro models and cell markers. In order to advance our understanding of trophoblast differentiation, suitable in vitro models and markers are required to study their development. The objectives of this study were to establish and characterise a serum-free in vitro model for murine secondary trophoblast cells. Secondary trophoblast giant cells growing in vitro and paraffin sections of day 8.5 postcoitum mouse embryos were processed for immunostaining to establish the expression of potential markers using antibodies to blood group antigens, E-cadherin, α 7 integrins and activator protein-γ, as well m placental lactogen-II. Within 3 days in serum-free culture, ectoplacental cone-derived secondary trophoblast cells underwent simultaneous induction of both morphological and functional differentiation. Secondary trophoblasts grew in vitro as a monolayer of cells with giant nuclei and expressed B and Le-b/Le-y blood group antigens, α7 integrins and placental lactogen-II, as well as activator protein-γ. Transcripts for activator protein-γ and placental lactogen-II were detected in cultures by RT-PCR and for placental lactogen-II by in situ hybridisation. At later time-points apoptosis increased. A fibronectin substrate significantly increased secondary trophoblast cell numbers and surface area of outgrowth. The increase in cells with giant nuclei coincided with induction of placental lactogen-II expression. A relationship was found between the nuclear area of secondary trophoblast cells and expression of placental lactogen-II. © 2004 Society for Reproduction and Fertility.
机译:滋养层巨细胞的分化是鼠胚胎植入过程中的早期事件。然而,啮齿动物中次级滋养层巨细胞的分化仍只是部分了解,可能是由于缺乏合适的体外模型和细胞标记。为了增进我们对滋养层细胞分化的理解,需要合适的体外模型和标记物来研究它们的发育。这项研究的目的是建立和表征鼠类次级滋养细胞无血清体外模型。使用针对血型抗原,E-钙黏着蛋白,α7整合素和激活蛋白-γ的抗体处理体外滋养的次生滋养层巨细胞和第8.5天的小鼠的石蜡切片,进行免疫染色以建立潜在标记的表达。胎盘催乳素Ⅱ。在无血清培养的三天内,外胎盘锥来源的次级滋养层细胞同时诱导了形态学和功能分化。次生滋养细胞在体外以具有巨核的细胞单层生长,并表达B和Le-b / Le-y血型抗原,α7整合素和胎盘催乳素II,以及活化蛋白-γ。通过RT-PCR在培养物中检测到活化蛋白-γ和胎盘乳原-II的转录本,并通过原位杂交检测胎盘乳原-II的转录本。在随后的时间点,细胞凋亡增加。纤连蛋白底物显着增加了次生滋养细胞的数量和表面积。具有巨核的细胞增加与胎盘乳原II的表达诱导相吻合。发现次级滋养层细胞的核面积与胎盘泌乳原-II的表达之间存在关系。 ©2004生殖与生育协会。

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