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https://doi.org/10.5713/ab.24.0915    [Accepted] Published online April 28, 2025.
The effect of combined cryoprotectants on the cryotolerance of boar sperm
Shuangyi Deng1, Liwei Yang1, Li Gao1, Chengcheng Ning1, Shiyin Wang1, Wei Zhang1,*
Xinjiang Agricultural Vocational and Technical University, Changji, China
Correspondence:  Wei Zhang, Tel: +86-13779256843, Fax: 0994-2338015, Email: zhangweigsau@163.com
Received: 24 December 2024   • Revised: 1 February 2025   • Accepted: 26 March 2025
Abstract
Objective
The frozen semen has the significant advantages of long-term storage and long-range transportation. However, due to the low cryotolerance of boar sperm, the global utilization of frozen boar semen in artificial insemination was less than 1% until the year 2000.
Methods
In this study, the effects of five cryoprotectants at different concentrations on the cryotolerance of boar semen were evaluated when they were added separately, and the optimal concentrations for each cryoprotectant were determined, then their combined additive effects were further assessed.
Results
At a GLY concentration of 5%, the quality of frozen-thawed sperm reached its maximum value, which was significantly higher than the 4% GLY group (p<0.05) and 0% GLY group (p<0.01). The VSL, VCL, VAP, SPMI, SAI and SMA of the frozen-thawed sperm in TEY group exhibited significant improvements compared to the UTEY group (p<0.05). The TM, PM, SPMI, SAI, and SMA of 2% ESP group were significantly higher than the rest groups (p<0.05). The TM, PM, VSL, VCL, and VAP of frozen-thawed sperm in the 250 nM and 300 nM MitoQ groups showed significant improvements compared to the other groups (p<0.05), and the ROS levels in sperm cells were also significantly lower (p<0.05). The quality of frozen-thawed boar sperm in 0.6 mM EGT group reached its peak value and was significantly higher than the rest groups (p<0.05). When these five cryoprotectants were used in combination, the quality of frozen-thawed boar sperm exhibited a significant improvement compared to when they were used individually (p<0.05). Utilizing the frozen-thawed boar semen to inseminate estrus sows, the reproductive performance of the sows did not differ significantly from the sows inseminated with fresh semen (p>0.05).
Conclusion
The optimized boar semen cryopreservation system can substantially enhance the quality of frozen-thawed boar sperm, making it suitable for artificial insemination in pig farm.
Keywords: Boar Sperm; Frozen Dilute; Cryoprotectants; Cryotolerance; Sperm Quality
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