Kinetic vitrification: concepts and perspectives in animal sperm cryopreservation.

IF 1.6 4区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Reproduction Pub Date : 2023-01-01 DOI:10.1590/1984-3143-AR2022-0096
Bianca Barreto Barbosa, Inara Tayná Alves Evangelista, Airton Renan Bastos Soares, Danuza Leite Leão, Ricardo José Garcia Pereira, Sheyla Farhayldes Souza Domingues
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Abstract

Sperm cryopreservation is an important tool for genetic diversity management programs and the conservation of endangered breeds and species. The most widely used method of sperm conservation is slow freezing, however, during the process, sperm cells suffer from cryoinjury, which reduces their viability and fertility rates. One of the alternatives to slow freezing is vitrification, that consist on rapid freezing, in which viable cells undergo glass-like solidification. This technology requires large concentrations of permeable cryoprotectants (P- CPA's) which increase the viscosity of the medium to prevent intracellular ice formation during cooling and warming, obtaining successful results in vitrification of oocytes and embryos. Unfortunately, this technology failed when applied to vitrification of sperm due to its higher sensitivity to increasing concentrations of P-CPAs. Alternatively, a technique termed 'kinetic sperm vitrification' has been used and consists in a technique of permeant cryoprotectant-free cryopreservation by direct plunging of a sperm suspension into liquid nitrogen. Some of the advantages of kinetic vitrification are the speed of execution and no rate-controlled equipment required. This technique has been used successfully and with better results for motility in human (50-70% motility recovery), dog (42%), fish (82%) and donkey (21.7%). However, more studies are required to improve sperm viability after devitrification, especially when it comes to motility recovery. The objective of this review is to present the principles of kinetic vitrification, the main findings in the literature, and the perspectives for the utilization of this technique as a cryopreservation method.

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动态玻璃化:动物精子冷冻保存的概念与展望。
精子冷冻保存是遗传多样性管理和濒危品种保护的重要手段。目前使用最广泛的精子保存方法是缓慢冷冻,但在此过程中,精子细胞会受到低温损伤,从而降低其生存能力和生育率。慢速冷冻的替代方法之一是玻璃化,即快速冷冻,其中活细胞经历玻璃状凝固。该技术需要高浓度的可渗透冷冻保护剂(P- CPA)来增加介质的粘度,以防止在冷却和加热过程中细胞内结冰,从而在卵母细胞和胚胎的玻璃化冷冻中获得成功的结果。不幸的是,这种技术在应用于精子玻璃化时失败了,因为它对p - cpa浓度的增加具有较高的敏感性。另外,一种被称为“动态精子玻璃化”的技术已经被使用,它包括一种渗透的无冷冻保护剂的低温保存技术,通过将精子悬浮液直接浸入液氮中。动力学玻璃化的一些优点是执行速度快,不需要速率控制设备。该技术已成功应用于人类(运动恢复50-70%)、狗(42%)、鱼(82%)和驴(21.7%)的运动恢复中,并取得了较好的效果。然而,需要更多的研究来提高脱卵后精子的生存能力,特别是在恢复运动能力方面。本综述的目的是介绍动态玻璃化的原理,文献中的主要发现,以及该技术作为冷冻保存方法的应用前景。
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来源期刊
Animal Reproduction
Animal Reproduction AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
2.30
自引率
11.80%
发文量
49
审稿时长
70 days
期刊介绍: Animal Reproduction (AR) publishes original scientific papers and invited literature reviews, in the form of Basic Research, Biotechnology, Applied Research and Review Articles, with the goal of contributing to a better understanding of phenomena related to animal reproduction. The scope of the journal applies to students, researchers and practitioners in the fields of veterinary, biology and animal science, also being of interest to practitioners of human medicine. Animal Reproduction Journal is the official organ of the Brazilian College of Animal Reproduction in Brazil.
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