牙买加果蝠精子的渗透耐受性和低温保存

Elisha Xiao-Kim , James K. Graham , Tony Schountz , Jennifer P. Barfield
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引用次数: 0

摘要

辅助生殖技术对于保护蝙蝠遗传、防止蝙蝠物种灭绝以及为病毒和疾病研究提供生物医学模型将变得越来越重要。然而,关于保存蝙蝠基因(包括精子)的能力,人们所知甚少。这些实验是为了确定牙买加果蝠(Artibeus jamaica’s)精子的一些生理特性,并制定有效冷冻保存这些精子的方案。利用流式细胞术测定蝙蝠精子的渗透耐受性,以确定蝙蝠精子在低温保存过程中承受渗透挑战的能力。其他实验测试了各种冷冻保护剂,以确定哪种冷冻保护剂最有效地保存精子;最后,如果冷冻保存的精子通过与卵泡外膜结合来维持功能。牙买加果蝠精子具有广泛的渗透性;当暴露在非常低(0 mOsm)或非常高(1.2 M)的渗透压下时,超过50% %的精子存活。此外,精子对冷休克损伤不敏感,可以在保持活力的情况下迅速从室温冷却到5℃。最后,使用甘油和甲基甲酰胺(MF)或二甲基甲酰胺(DMF)的组合作为冷冻保护剂保存细胞,结果精子的活动百分比(54 %)高于单独用甘油冷冻的精子(35 %);p & lt; 0.05)。有趣的是,所有冷冻保护剂处理后,冷冻保存后完整膜精子的百分比相似(58-67 %;p 祝辞 0.05)。我们对冷冻保存后精子功能的测试仅限于测试精子与卵泡周膜结合的能力,其中甘油+ MF与膜结合的精子数量(19.6 ± 5.5)高于单独使用甘油冷冻保存的精子数量(12.0 ± 5.2;p & lt; 0.05)。总之,牙买加果蝠精子可以有效地抵御渗透问题和冷休克引起的膜损伤。此外,用甘油和酰胺组合冷冻保存的蝙蝠精子比单独用甘油冷冻保存的精子保持更高的运动细胞百分比;冷冻保存的精子保持了与卵泡外膜结合的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Osmotic tolerance and cryopreservation of Jamaican fruit bat (Artibeus jamaicensis) sperm
Assisted reproductive technologies will become increasingly important to preserve bat genetics to prevent the extinction of bat species and provide biomedical models for viral and disease research. However, little is known regarding the ability to preserve bat genetics, including sperm. These experiments were conducted to determine some of the physiological properties of sperm from the Jamaican fruit bat (Artibeus Jamaican’s), and develop a protocol to effectively cryopreserve these sperm. Experiments were conducted to determine the osmotic tolerance of bat sperm, using flow cytometry, to determine how well bat sperm can withstand the osmotic challenges they must endure during the cryopreservation process. Additional experiments tested various cryoprotectants to determine which cryoprotectant preserved sperm most efficiently; and finally, if cryopreserved sperm maintained functionality by binding to the perivitelline membrane. Jamaican fruit bat sperm exhibit a wide osmotic tolerance; greater than 50 % of the sperm survive when exposed to very low (0 mOsm) or very high (1.2 M) osmolalities. In addition, the sperm are not sensitive to cold-shock damage, and can be cooled from room temperature to 5 ºC very quickly while retaining viability. Finally, preserving the cells, using a combination of glycerol and either methyl formamide (MF) or dimethyl formamide (DMF) as the cryoprotectant, resulted in higher percentages of motile sperm (54 %) than sperm frozen in glycerol alone (35 %; p < 0.05). Interestingly, the percentages of sperm with intact membranes following cryopreservation were similar for all cryoprotectant treatments (58–67 %; p > 0.05). Our ability to test sperm functionality after cryopreservation was limited to testing the sperm’s ability to bind the perivitelline membrane, in which higher numbers of sperm cryopreserved with glycerol + MF bound to the membrane (19.6 ± 5.5) than sperm cryopreserved in glycerol alone (12.0 ± 5.2; p < 0.05). In conclusion, Jamaican fruit bat sperm can effectively withstand membrane damage caused by osmotic issues and cold shock. In addition, bat sperm cryopreserved with a combination of glycerol and amides maintain higher percentages of motile cells, than sperm cryopreserved in glycerol alone; and cryopreserved sperm maintained their ability to bind to the perivitelline membrane.
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来源期刊
Theriogenology wild
Theriogenology wild Animal Science and Zoology, Veterinary Science
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