Catalán Jaime, Llavanera Marc, Bonilla-Correal Sebastián, Papas Marion, Gacem Sabrina, Rodríguez-Gil Joan E, Yeste Marc, Miró Jordi
Unit of Animal Reproduction, Department of Animal Medicine and Surgery, Faculty of Veterinary Medicine, Autonomous University of Barcelona, Spain; Biotechnology of Animal and Human Reproduction (TechnoSperm), Institute of Food and Agricultural Technology, University of Girona, Girona, Spain; Unit of Cell Biology, Department of Biology, Faculty of Sciences, University of Girona, Girona, Spain.
Biotechnology of Animal and Human Reproduction (TechnoSperm), Institute of Food and Agricultural Technology, University of Girona, Girona, Spain; Unit of Cell Biology, Department of Biology, Faculty of Sciences, University of Girona, Girona, Spain.
Theriogenology. 2020 Nov;157:85-95. doi: 10.1016/j.theriogenology.2020.07.027. Epub 2020 Jul 28.
The aim of this study was to evaluate whether red-light stimulation increases the longevity and resilience of cryopreserved stallion sperm to withstand post-thaw incubation for 120 min. Sixteen frozen straws of 0.5 mL from eight stallions were used. Samples were cryopreserved, thawed through incubation at 38 °C for 30 s and divided into the control and samples exposed to red-light using a triple LED photo-activation system (wavelength: 620-630 nm). Three irradiation protocols consisting of different light-dark-light intervals (1-1-1, 2-2-2 and 3-3-3 min) were tested. Sperm quality parameters were analyzed immediately after light-stimulation (0 min) and after 120 min of incubation at 38 °C. Sperm motility was evaluated using a Computerized Semen Analysis System (CASA), and flow cytometry and different fluorochromes were used to evaluate the integrity and lipid disorder of plasma membrane, mitochondrial membrane potential and intracellular levels of peroxides and superoxides. Irradiation significantly increased the percentages of spermatozoa with high mitochondrial membrane potential (1-1-1 pattern) and the intracellular levels of peroxides (2-2-2 pattern) at 0 min. In addition, sperm kinematic parameters (2-2-2 and 3-3-3 patterns) and percentages of viable spermatozoa with low membrane lipid disorder (3-3-3 pattern) were significantly higher in irradiated samples than in the control at 120 min. Our results indicate that red-light stimulation could help increase the resilience of frozen-thawed stallion sperm to withstand post-thaw incubation at 38 °C for 120 min and that these effects rely on the irradiation pattern. Further research should evaluate whether light-stimulation could also have a positive on fertility rates after artificial insemination.
本研究的目的是评估红光刺激是否能提高冷冻保存的种马精子的寿命和恢复能力,使其能够承受解冻后120分钟的孵育。使用了来自8匹种马的16根0.5毫升的冷冻细管。样本经过冷冻保存,在38°C下孵育30秒解冻,然后分为对照组和使用三LED光激活系统(波长:620 - 630纳米)照射红光的样本组。测试了三种由不同明暗光间隔(1 - 1 - 1、2 - 2 - 2和3 - 3 - 3分钟)组成的照射方案。在光刺激后立即(0分钟)以及在38°C孵育120分钟后分析精子质量参数。使用计算机辅助精液分析系统(CASA)评估精子活力,并用流式细胞术和不同荧光染料评估质膜的完整性和脂质紊乱、线粒体膜电位以及细胞内过氧化物和超氧化物水平。照射在0分钟时显著增加了线粒体膜电位高的精子百分比(1 - 1 - 1模式)和细胞内过氧化物水平(2 - 2 - 2模式)。此外,在120分钟时,照射样本中的精子运动学参数(2 - 2 - 2和3 - 3 - 3模式)以及膜脂质紊乱低的活精子百分比(3 - 3 - 3模式)显著高于对照组。我们的结果表明,红光刺激有助于提高冻融种马精子在38°C下承受解冻后120分钟孵育的恢复能力,且这些效果依赖于照射模式。进一步的研究应评估光刺激对人工授精后的生育率是否也有积极影响。