首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >The effect of osmotic stress on the cell volume, metaphase II spindle and developmental potential of in vitro matured porcine oocytes.
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The effect of osmotic stress on the cell volume, metaphase II spindle and developmental potential of in vitro matured porcine oocytes.

机译:渗透胁迫对体外成熟猪卵母细胞的细胞体积,中期II纺锤体和发育潜能的影响。

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摘要

Porcine animal models are used to advance our understanding of human physiology. Current research is also directed at methods to produce transgenic pigs. Cryobanking gametes and embryos can facilitate the preservation of valuable genotypes, yet cryopreserving oocytes from pigs has proven very challenging. The current study was designed to understand the effects of anisotonic solutions on in vitro matured porcine oocytes as a first step toward designing improved cryopreservation procedures. We hypothesized that the proportion of oocytes demonstrating a normal spindle apparatus and in vitro developmental potential would be proportional to the solution osmolality. Oocytes were incubated for 10 min at 38 degrees C in various hypo- or hypertonic solutions, and an isotonic control solution and then assessed for these two parameters. Our results support the hypothesis, with an increasing proportion of spindles showing a disrupted structure as the levels of anisotonic exposure diverge from isotonic. Only abouthalf of the oocytes maintained developmental potential after exposure to anisotonic solutions compared to untreated controls. Oocyte volume displayed a linear response to anisotonic solutions as expected, with an estimated relative osmotically inactive cell volume of 0.178. The results from this study provide initial biophysical data to characterize porcine oocytes. The results from future experiments designed to determine the membrane permeability to various cryoprotectants will allow predictive modeling of optimal cryopreservation parameters and provide a basis for designing improved cryopreservation procedures.
机译:猪动物模型用于增进我们对人类生理的理解。当前的研究还针对生产转基因猪的方法。冷冻库配子和胚胎可以促进有价值的基因型的保存,但是从猪中冷冻保存卵母细胞被证明是非常具有挑战性的。本研究旨在了解各向异性溶液对体外成熟猪卵母细胞的影响,这是设计改进的冷冻保存程序的第一步。我们假设显示正常纺锤体设备和体外发育潜力的卵母细胞比例将与溶液渗透压成正比。将卵母细胞在各种低渗或高渗溶液和等渗对照溶液中于38摄氏度孵育10分钟,然后评估这两个参数。我们的研究结果支持了这一假设,随着等渗暴露量与等渗量的不同,纺锤体比例不断增加,其结构受到破坏。与未处理的对照组相比,在暴露于等渗溶液后只有约一半的卵母细胞保持了发育潜能。卵母细胞的体积显示出对各向异性溶液的线性响应,与预期的相对,渗透失活的相对细胞体积估计为0.178。这项研究的结果提供了初步的生物物理数据来表征猪卵母细胞。旨在确定膜对各种防冻剂的渗透性的未来实验结果将为最佳冷冻保存参数进行预测建模,并为设计改进的冷冻保存程序提供基础。

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