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在冷冻保存前,通过 Ca-ATPase 抑制牛螺旋运动精子出现高强度活力。

Involvement of Ca-ATPase in suppressing the appearance of bovine helically motile spermatozoa with intense force prior to cryopreservation.

机构信息

Laboratory of Reproductive Biology, Division of Animal Science, Department of Bioresource Science, Graduate School of Agricultural Science, Kobe University, Kobe 657-8501, Japan.

Hokubu Agricultural Technology Institute, Hyogo Prefectural Technology Center for Agriculture, Forestry and Fisheries, Hyogo 669-5254, Japan.

出版信息

J Reprod Dev. 2022 Jun 1;68(3):181-189. doi: 10.1262/jrd.2021-143. Epub 2022 Mar 3.

Abstract

In cattle, cryopreserved spermatozoa are generally used for artificial insemination (AI). Many of these specimens exhibit helical movement, although the molecular mechanisms underlying this phenomenon remain unclear. This study aimed to characterize helically motile spermatozoa, investigate the involvement of Ca-ATPase in suppressing the appearance of these spermatozoa prior to cryopreservation, and examine the potential of helical movement as an index of sperm quality. In the cryopreserved semen, approximately 50% of spermatozoa were helically motile, whereas approximately 25% were planarly motile. The helically motile samples swam significantly faster than those with planar movement, in both non-viscous medium and viscous medium containing polyvinylpyrrolidone. In contrast, in non-cryopreserved semen, planarly motile spermatozoa outnumbered those that were helically motile. Fluorescence microscopy with Fluo-3/AM and propidium iodide showed that flagellar [Ca] was significantly higher in cryopreserved live spermatozoa than in non-cryopreserved live ones. The percentage of non-cryopreserved helically motile spermatozoa was approximately 25% after washing, and this increased significantly to approximately 50% after treatment with an inhibitor of sarcoplasmic reticulum Ca-ATPases (SERCAs), "thapsigargin." Immunostaining showed the presence of SERCAs in sperm necks. Additionally, the percentages of cryopreserved helically motile spermatozoa showed large inter-bull differences and a significantly positive correlation with post-AI conception rates, indicating that helical movement has the potential to serve as a predictor of the fertilizing ability of these spermatozoa. These results suggest that SERCAs in the neck suppress the cytoplasmic Ca-dependent appearance of helically motile spermatozoa with intense force in semen prior to cryopreservation.

摘要

在牛中,通常使用冷冻保存的精子进行人工授精 (AI)。许多这些标本表现出螺旋运动,尽管其背后的分子机制仍不清楚。本研究旨在表征螺旋运动的精子,研究 Ca-ATPase 在冷冻保存前抑制这些精子出现的作用,并检查螺旋运动作为精子质量指标的潜力。在冷冻保存的精液中,约 50%的精子为螺旋运动,约 25%为平面运动。在非粘性介质和含有聚乙烯吡咯烷酮的粘性介质中,螺旋运动的样本游动速度明显快于平面运动的样本。相比之下,在非冷冻保存的精液中,平面运动的精子数量多于螺旋运动的精子。用 Fluo-3/AM 和碘化丙啶进行荧光显微镜检查显示,冷冻保存的活精子的鞭毛 [Ca] 明显高于非冷冻保存的活精子。洗涤后,非冷冻保存的螺旋运动精子的百分比约为 25%,用肌浆网 Ca-ATP 酶 (SERCA) 的抑制剂 "thapsigargin" 处理后,这一比例显著增加到约 50%。免疫染色显示 SERCA 存在于精子颈部。此外,冷冻保存的螺旋运动精子的百分比在公牛之间存在很大差异,与 AI 后受孕率呈显著正相关,表明螺旋运动有可能成为这些精子受精能力的预测指标。这些结果表明,颈部中的 SERCA 在冷冻保存前以强烈的力抑制精液中细胞质 Ca 依赖性的螺旋运动精子的出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4bf/9184823/d834c51e5a9b/jrd-68-181-g001.jpg

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