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A brief history of oocyte cryopreservation: Arguments and facts

机译:卵母细胞冷冻保存的简史:论点和事实

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摘要

Abstract The term “cryopreservation” refers to the process of cooling cells and tissues and storing them at subzero temperatures in order to stop all biological activity and preserve their viability and physiological competences for future use. Cooling to subzero temperatures is not a physiological condition for human cells; this is probably due to the high content of water in the living matter, whose conversion to ice crystals may be associated with severe and irreversible damage. Among reproductive cells and tissues, metaphase II oocytes are notably vulnerable to cryopreservation, mainly because of their large size, low surface area to volume ratio, relatively high water content and presence of the meiotic spindle. As human biological systems lack efficient internal defense mechanisms against chilling injuries, it is of the utmost importance to supply adequate external support, in terms of cryoprotectant additives, appropriate cooling/warming rates, and suitable long‐term storage. Over the years, scientists have proposed different cryopreservation strategies in the effort to achieve an optimized recipe ensuring cell survival and, at the same time, maintenance of the physiological functions and abilities necessary to continue life. However, despite the first success obtained in the 1980s with frozen oocytes, it was not until recently that notable improvements in the cryopreservation technique, thanks to the advent of vitrification, allowed a breakthrough of this fine procedure.
机译:摘要术语“冷冻保存”是指冷却细胞和组织的过程,并将它们存放在亚零温度下,以阻止所有生物活性并保留其生存能力和生理能力以备将来使用。冷却到亚零温度不是人体细胞的生理条件;这可能是由于生物物质中的水含量高,其转换对冰晶可能与严重和不可逆转的损伤有关。在生殖细胞和组织中,中期II卵母细胞尤其容易受到冷冻保存,主要是因为它们的大尺寸,低表面积为体积比,相对高的含水量和减数纺锤的存在。随着人类生物系统缺乏对寒冷损伤的有效内部防御机制,在冷冻保护剂添加剂,适当的冷却/加热速率和合适的长期储存方面,提供充足的外部支持至关重要。多年来,科学家们提出了不同的冷冻保存策略,以实现优化的配方确保细胞生存,同时维持生命功能和继续生活所需的能力。然而,尽管在20世纪80年代获得了冷冻卵母细胞的第一次成功,但直到最近,仍然认为冷冻保存技术的显着改进,由于玻璃化的出现,允许这种精细程序的突破。

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