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冷冻保存期间及之后公牛精子的评估:结构和超微结构见解

Evaluation of bull spermatozoa during and after cryopreservation: Structural and ultrastructural insights.

作者信息

Khalil Wael A, El-Harairy Mostafa A, Zeidan Alaa E B, Hassan Mahmoud A E, Mohey-Elsaeed Omnia

机构信息

Department of Animal Production, Faculty of Agriculture, Mansoura University, Mansoura 35516, Egypt.

Animal Production Research Institute, Dokki, Giza, Egypt.

出版信息

Int J Vet Sci Med. 2017 Nov 22;6(Suppl):S49-S56. doi: 10.1016/j.ijvsm.2017.11.001. eCollection 2018.

Abstract

Semen cryopreservation is a well-established procedure used in veterinary assisted reproduction technology applications. We investigated damaging effects of cryopreservation on the structural and ultrastructural characteristics of bull sperm induced at different temperatures and steps during standard cryopreservation procedure using transmission (TEM) and scanning electron microscopy. We also examined the effect of cryopreservation on sperm DNA and chromatin integrity. Five healthy, fertile Friesian bulls were used, and the ejaculates were obtained using an artificial vagina method. The semen samples were pooled and diluted in a tris-yolk fructose (TYF) for a final concentration of 80 × 10 spermatozoa/ml. The semen samples were packed in straws (0.25 ml), and stored in liquid nitrogen (-196°C). Samples were evaluated before dilution, just after dilution (at 37°C), at 2 h and 4 h during equilibration, and after thawing (37°C for 30 s in water bath). In association with step-wise decline in motility and viability, our results showed that the plasma membrane surrounding the sperm head was the most vulnerable structure to cryo-damage with various degrees of swelling, undulation, or loss affecting about 50% of the total sperm population after equilibration and freezing. Typical acrosome reaction was limited to 10% of the spermatozoa after freezing. We also observed increased number of mitochondria with distorted cristae (15%). Chromatin damage was significantly increased by cryopreservation as evident by TEM (9%). This was mainly due to DNA breaks as confirmed by Sperm Chromatin Structure Assay (SCSA) (8.4%) whereas the chromatin structure was less affected as evaluated microscopically by toluidine blue staining. We concluded that, using standard cryopreservation protocol, the most pronounced damage induced by cryopreservation is observed in the plasma membrane. Further improvement of cryopreservation protocols should thus be targeted at reducing plasma membrane damage. Acrosomal, mitochondrial and chromatin damage are also evident but appear to be within acceptable limits as discussed.

摘要

精液冷冻保存是兽医辅助生殖技术应用中一项成熟的程序。我们使用透射电子显微镜(TEM)和扫描电子显微镜,研究了在标准冷冻保存程序中不同温度和步骤下冷冻保存对公牛精子结构和超微结构特征的损伤作用。我们还检测了冷冻保存对精子DNA和染色质完整性的影响。使用了5头健康、可育的弗里斯兰公牛,通过人工阴道法采集精液。将精液样本混合并在三羟甲基氨基甲烷 - 卵黄 - 果糖(TYF)中稀释,最终浓度为80×10⁶精子/ml。精液样本装入细管(0.25 ml)中,储存在液氮(-196°C)中。在稀释前、刚稀释后(37°C)、平衡过程中的2小时和4小时以及解冻后(在水浴中37°C解冻30秒)对样本进行评估。随着活力和生存能力的逐步下降,我们的结果表明,精子头部周围的质膜是最易受冷冻损伤的结构,在平衡和冷冻后,约50%的精子群体出现不同程度的肿胀、起伏或丢失。冷冻后典型的顶体反应仅限于10%的精子。我们还观察到线粒体数量增加,嵴变形(15%)。冷冻保存使染色质损伤显著增加,透射电子显微镜观察结果明显(9%)。精子染色质结构分析(SCSA)证实这主要是由于DNA断裂(8.4%),而通过甲苯胺蓝染色显微镜评估,染色质结构受影响较小。我们得出结论,使用标准冷冻保存方案时,冷冻保存引起的最明显损伤出现在质膜。因此,进一步改进冷冻保存方案应旨在减少质膜损伤。顶体、线粒体和染色质损伤也很明显,但如前所述,似乎在可接受范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f96b/6161860/84ecce35590d/gr1.jpg

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