首页> 外文期刊>Scientific reports. >High survival of mouse oocytes/embryos after vitrification without permeating cryoprotectants followed by ultra-rapid warming with an IR laser pulse
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High survival of mouse oocytes/embryos after vitrification without permeating cryoprotectants followed by ultra-rapid warming with an IR laser pulse

机译:玻璃化后小鼠卵母细胞/胚胎的高存活而不渗透冷冻保护剂,然后用红外激光脉冲进行超快速升温

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Vitrification is now the main route to the cryopreservation of human and animal oocytes and preimplantation embryos. A central belief is that for success, the cells must be placed in very high concentrations of cryoprotective solutes and must be cooled extremely rapidly. We have shown recently that these beliefs are incorrect. Over 90% of mouse oocytes and embryos survive being cooled relatively slowly even in solutions containing only 1/3rd the normal solute concentrations, provided that they are warmed ultra-rapidly at 107°C/min by a laser pulse. Nearly all vitrification solutions contain both permeating and non-permeating solutes, and an important question is whether the former protect because they permeate the cells and promote intracellular vitrification (as is almost universally believed), or because they osmotically withdraw a large fraction of intracellular water prior to cooling. The answer for the mouse system is clearly the latter. When oocytes or embryos are placed in 1 molal concentrations of the impermeable solute sucrose, they osmotically lose ~85% of their cellular water in less than 2 minutes. If the cells are then cooled rapidly to ?196°C, nearly 90% remain viable after warming, again provided that the warming is ultra rapid.
机译:玻璃化现在是人类和动物卵母细胞和预体胚胎的冷冻保存的主要途径。核心信念是,为了成功,细胞必须以非常高浓度的冷冻保护溶质置于非常高的浓度,并且必须极快地冷却。我们最近表现出这些信念是不正确的。即使在含有1/3 Rd 的正常溶质浓度的溶液中,超过90%的小鼠卵母细胞和胚胎的存活率相对缓慢地冷却,只要它们在10 7 7 °C / min。几乎所有玻璃化溶液都含有渗透和不渗透溶质,并且一个重要的问题是前一种保护是因为它们是否渗透细胞并促进细胞内玻璃化(如几乎普遍认为),或者因为它们渗透地撤离大部分细胞内水在冷却之前。鼠标系统的答案显然是后者。当卵母细胞或胚胎被置于1个摩尔浓度的不透水溶质蔗糖中时,它们在不到2分钟的时间内渗透到其细胞水中的〜85%。如果将细胞快速冷却至196℃,则在升温后近90%仍然可行,再次提供了升温是超快速的。

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