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首页> 外文期刊>Theriogenology >Highly efficient vitrification for cryopreservation of human oocytes and embryos: the Cryotop method.
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Highly efficient vitrification for cryopreservation of human oocytes and embryos: the Cryotop method.

机译:冷冻人卵母细胞和胚胎的高效玻璃化:Cryotop方法。

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摘要

Vitrification is frequently referred to as a novel technology of cryopreservation in embryology, although some young embryologists were born after its first successful application. Unfortunately, in spite of the accumulated evidence regarding its enormous potential value, most domestic animal and human laboratories use exclusively the traditional slow-rate freezing with its compromised efficiency and inconsistency. The purpose of this paper is to clarify terms and conditions, to summarize arguments supporting or disapproving the use of vitrification, and to outline its role among assisted reproductive technologies. To provide evidence for the potential significance of vitrification, achievements with the Cryotop technology, an advanced version of the "minimal volume approaches" is analyzed. This technology alone has resulted in more healthy babies after cryopreservation of blastocysts than any other vitrification technique, and more successful human oocyte vitrification resulting in normal births than any other cryopreservation method. The value of this method is also demonstrated by achievements in the field of domestic animal embryology. A modification of the technique using a hermetically sealed container for storage may help to eliminate potential dangers of disease transmission and open the way for widespread application for cryopreservation at all phases of oocyte and preimplantation embryo development in mammals..
机译:玻璃化在胚胎学中经常被称为冷冻保存的一种新技术,尽管一些年轻的胚胎学家是在首次成功应用后诞生的。不幸的是,尽管有大量的证据证明其具有巨大的潜在价值,但大多数家畜和人类实验室都只使用传统的慢速冷冻技术,其效率和一致性都受到损害。本文的目的是阐明条款和条件,总结支持或不赞成使用玻璃化的论点,并概述其在辅助生殖技术中的作用。为了提供玻璃化的潜在重要性的证据,分析了Cryotop技术的成就,“最小体积方法”的高级版本。冷冻保存胚泡后,仅此一项技术就比其他任何玻璃化技术带来了更多健康的婴儿,并且比其他任何冷冻方法更成功地完成了人类卵母细胞玻璃化,从而能够正常出生。家畜胚胎学领域的成就也证明了这种方法的价值。使用气密容器进行存储的技术的修改可以帮助消除疾病传播的潜在危险,并为在卵母细胞和植入前胚胎发育的所有阶段进行冷冻保存的广泛应用开辟道路。

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