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首页> 外文期刊>Fish Physiology and Biochemistry >Effect of the addition of six antioxidants on sperm motility, membrane integrity and mitochondrial function in red seabream (Pagrus major) sperm cryopreservation
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Effect of the addition of six antioxidants on sperm motility, membrane integrity and mitochondrial function in red seabream (Pagrus major) sperm cryopreservation

机译:添加六种抗氧化剂对红鲷(Pagrus major)精子冷冻保存精子活力,膜完整性和线粒体功能的影响

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The present study was to evaluate the effects of six antioxidants on frozen-thawed sperm motility, viability, membrane integrity and mitochondrial function in red seabream (Pagrus major) by computer-assisted sperm analysis system and flow cytometry, respectively. All the parameters tested in this study were determined using one-way ANOVA and identified using the SNK test (P 0.05). The results demonstrated that on the first day, the highest motility and longevity occurred in 100 mM trehalose (78.34 +/- 3.41 %, 29 +/- 4.00 days) and 50 mM taurine (77.46 +/- 1.54 %, 29.33 +/- 4.04 days), followed by 25 mM vitamin C (79.03 +/- 5.37 %, 17 +/- 1.00 days), 25 mM vitamin E (69.64 +/- 1.64 %, 27.67 +/- 1.53 days) and 25 mM vitamin A (78.89 +/- 2.81 %, 9.33 +/- 1.53 days), which were all higher than frozen-thawed sperm without antioxidant (control) (66.80 +/- 5.55, 5.67 +/- 1.15 days). Especially, the percentages of class A sperm with the addition of 100 mM trehalose (40.39 +/- 5.20 %) and 50 mM taurine (37.78 +/- 3.22 %) were significantly improved compared to the control (19.63 +/- 5.44 %). The viability of all groups on the third and sixth day showed a similar trend. Moreover, during the 4 degrees C storage process, the decrease of frozen-thawed sperm motility was closely associated with the decrease in membrane integrity and mitochondrial function. In conclusion, the present study indicated that antioxidant (100 mM trehalose and 50 mM taurine) provided the most pronounced protective effect in improving frozen-thawed quality of red seabream sperm. The addition of antioxidant may be capable of scavenging the ROS generated during the cryopreservation process and 4 degrees C storage.
机译:本研究旨在通过计算机辅助精子分析系统和流式细胞术评估六种抗氧化剂对红鲷(Pagrus major)冷冻解冻的精子活力,活力,膜完整性和线粒体功能的影响。使用单向方差分析确定本研究中测试的所有参数,并使用SNK测试进行鉴定(P <0.05)。结果表明,在第一天,最高运动和寿命发生在100 mM海藻糖(78.34 +/- 3.41%,29 +/- 4.00天)和50 mM牛磺酸(77.46 +/- 1.54%,29.33 +/-)中4.04天),然后是25 mM维生素C(79.03 +/- 5.37%,17 +/- 1.00天),25 mM维生素E(69.64 +/- 1.64%,27.67 +/- 1.53天)和25 mM维生素A (78.89 +/- 2.81%,9.33 +/- 1.53天),均高于不含抗氧化剂的冻融精子(对照)(66.80 +/- 5.55,5.67 +/- 1.15天)。尤其是,与对照组(19.63 +/- 5.44%)相比,添加100 mM海藻糖(40.39 +/- 5.20%)和50 mM牛磺酸(37.78 +/- 3.22%)的A类精子百分比显着提高。 。所有组在第三天和第六天的生存能力都显示出相似的趋势。此外,在4摄氏度的储存过程中,冻融精子活力的降低与膜完整性和线粒体功能的降低密切相关。总之,本研究表明抗氧化剂(100 mM海藻糖和50 mM牛磺酸)在改善红鲷精子的冻融质量方面提供了最明显的保护作用。添加抗氧化剂可能能够清除在低温保存过程和4°C储存过程中产生的ROS。

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