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首页> 外文期刊>Biophysics >A Role of Trophoblastic Cells in Regulation of Mouse Blastocyst Survival in vitro after Microinjection and Osmotic
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A Role of Trophoblastic Cells in Regulation of Mouse Blastocyst Survival in vitro after Microinjection and Osmotic

机译:滋养细胞在微注射和渗透后体外调节小鼠胚泡存活中的作用

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摘要

We have evaluated the morphology of the mouse preimplantation embryos at developmental stages from morula to late blastocyst after two different impacts: microinjection of modified Witten's medium and osmotic stress in physiological osmolarity (310 mOsM), in 5% glucose (560 mOsM) at high concentration of NaCl (614 mOsM). Results of our research showed that these stresses caused similar changes in embryo morphology: volume was reduced followed by its recovery in culture medium (osmolality was less than a physiological value, 260 mOsM). The ability of embryos to recover the volume and morphology up to the initial level depends on a stage of embryo development and consequently competence of TB cells. In this study it was revealed that a key role in regulation of volume homeostasis after microinjection and after shorttime (30-60 min) osmotic stress belongs to TB cells. Both physical effects induce the further embryo development in vitro up to the formation of primary colonies of embryonic and trophoblastic cells. These data could be used to develop the morphological criteria for a prediction of blastocyst-stage embryonic implantation potential.
机译:在两种不同的影响下,我们评估了小鼠从桑im发育到胚泡发育后期的胚胎植入前的形态:微注射改良的维滕氏培养基和渗透压的生理渗透压(310 mOsM),高浓度5%葡萄糖(560 mOsM) NaCl(614 mOsM)。我们的研究结果表明,这些压力引起了类似的胚胎形态变化:体积减小,随后在培养基中恢复(重量克分子渗透压浓度小于生理值260 mOsM)。胚胎恢复体积和形态直至初始水平的能力取决于胚胎发育的阶段,进而取决于TB细胞的能力。在这项研究中,揭示了在微注射后以及短时间(30-60分钟)的渗透压后,调节体积稳态的关键作用属于TB细胞。两种物理作用都会诱导体外胚胎的进一步发育,直至形成胚胎和滋养细胞的原始集落。这些数据可用于制定形态学标准,用于预测胚泡期胚胎着床潜力。

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