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Effect of Mito-TEMPO on Post-thawed Semen Quality in Goats | ||
Iranian Journal of Veterinary Medicine | ||
مقاله 11، دوره 17، شماره 4، دی 2023، صفحه 393-400 اصل مقاله (1015.48 K) | ||
نوع مقاله: Original Articles | ||
شناسه دیجیتال (DOI): 10.32598/ijvm.17.4.1005346 | ||
نویسندگان | ||
Hoda Javaheri Barfourooshi1؛ Saeid Esmaeilkhanian* 1؛ Navid Dadashpour Davachi2؛ Nader Asadzadeh1؛ Reza Masoudi1 | ||
1Animal Science Research Institute of Iran (ASRI), Agricultural Research Education and Extension Organization (AREEO), Karaj, Iran. | ||
2Department of Research, Breeding and Production of Laboratory Animals, Razi Vaccine and Serum Research Institute, Agricultural Research Education and Extension Organization (AREEO), Karaj, Iran | ||
چکیده | ||
Background: Although sperm cryopreservation seems to be an efficient technique for distributing competent sperm for artificial insemination, the process affects the quality of post-thawed sperm. Objectives: This study was designed to see how the novel mitochondria-targeted antioxidant “Mito-TEMPO” affected buck sperm quality during cryopreservation. Methods: After proper semen samples collection, they were diluted and divided into 5 equal groups and cryopreserved in liquid nitrogen with 0, 1, 10, 100, and 1000 µM Mito-TEMPO. Sperm motility, lipid peroxidation, abnormal morphology, acrosome integrity, membrane integrity, and viability were all evaluated after thawing. Results: When the freezing extender was supplemented with 10 µM Mito-TEMPO, total motility, progressive motility, membrane integrity, acrosome integrity, and viability increased (P≤0.05), while lipid peroxidation decreased (P≤0.05). Conclusion: Finally, the novel mitochondria-targeted antioxidant “Mito-TEMPO” could be introduced as an effective cryo-additive to improve buck semen quality parameters during cryopreservation. | ||
کلیدواژهها | ||
Buck؛ Cryopreservation؛ Extender؛ Mito-TEMPO؛ Sperm | ||
اصل مقاله | ||
1. Introduction
Askarianzadeh, Z., Sharafi, M., & Karimi Torshizi, M. A. (2018).Sperm quality characteristics and fertilization capacity after cryopreservation of rooster semen in extender exposed to a magnetic field. Animal Reproduction Science, 198, 37-46. [DOI:10.1016/j.anireprosci.2018.08.043] [PMID] Bajt, M. L., Farhood, A., Lemasters, J. J., & Jaeschke, H. (2008). Mitochondrial Bax translocation accelerates DNA fragmentation and cell necrosis in a murine model of acetaminophen hepatotoxicity. The Journal of Pharmacology and Experimental Therapeutics, 324(1), 8–14. [DOI:10.1124/jpet.107.129445] [PMID] Bateni, Z., Azadi, L., Tavalaee, M., Kiani-Esfahani, A., Fazilati, M., & Nasr-Esfahani, M. H. (2014). Addition of Tempol in semen cryopreservation medium improves the post-thaw sperm function. Systems Biology in Reproductive Medicine, 60(4), 245–250. [DOI:10.3109/19396368.2014.897773] [PMID] Chen, H., Chomyn, A., & Chan, D. C. (2005). Disruption of fusion results in mitochondrial heterogeneity and dysfunction. The Journal of Biological Chemistry, 280(28), 26185–26192. [DOI:10.1074/jbc.M503062200] [PMID] Chen, P. I., Cao, A., Miyagawa, K., Tojais, N. F., Hennigs, J. K., & Li, C. G., et al. (2017). Amphetamines promote mitochondrial dysfunction and DNA damage in pulmonary hypertension. JCI Insight, 2(2), e90427. [DOI:10.1172/jci.insight.90427] Choumar, A., Tarhuni, A., Lettéron, P., Reyl-Desmars, F., Dauhoo, N., & Damasse, J., et al. (2011). Lipopolysaccharide-induced mitochondrial DNA depletion. Antioxidants & Redox signaling, 15(11), 2837–2854. [DOI:10.1089/ars.2010.3713] [PMID] Dikalova, A. E., Bikineyeva, A. T., Budzyn, K., Nazarewicz, R. R., McCann, L., & Lewis, W., et al. (2010). Therapeutic targeting of mitochondrial superoxide in hypertension. Circulation Research, 107, 106-116. [DOI:10.1161/CIRCRESAHA.109.214601] [PMID] [PMCID] Du, K., Farhood, A., & Jaeschke, H. (2017). Mitochondria-targeted antioxidant Mito-Tempo protects against acetaminophen hepatotoxicity. Archives of Toxicology, 91(2), 761–773.[DOI:10.1007/s00204-016-1692-0] [PMID] [PMCID] Fang, L., Bai, C., Chen, Y., Dai, J., Xiang, Y., & Ji, X., et al. (2014). Inhibition of ROS production through mitochondria-targeted antioxidant and mitochondrial uncoupling increases post-thaw sperm viability in yellow catfish. Cryobiology, 69(3), 386–393. [DOI:10.1016/j.cryobiol.2014.09.005] [PMID] Feyzi, S., Sharafi, M., & Rahimi, S. (2018). Stress preconditioning of rooster semen before cryopreservation improves fertility potential of thawed sperm. Poultry Science, 97(7), 2582–2590. [DOI:10.3382/ps/pey067] [PMID] Gómez-Torres, M. J., Medrano, L., Romero, A., Fernández-Colom, P. J., & Aizpurúa, J. (2017). Effectiveness of human spermatozoa biomarkers as indicators of structural damage during cryopreservation. Cryobiology, 78, 90-94. [DOI:10.1016/j.cryobiol.2017.06.008] [PMID] Hamdan, M., Jones, K. T., Cheong, Y., & Lane, S. I. (2016). The sensitivity of the DNA damage checkpoint prevents oocyte maturation in endometriosis. Scientific Reports, 6, 36994.[DOI:10.1038/srep36994] [PMID] [PMCID] Liang, H. L., Sedlic, F., Bosnjak, Z., & Nilakantan, V. (2010). SOD1 and MitoTEMPO partially prevent mitochondrial permeability transition pore opening, necrosis, and mitochondrial apoptosis after ATP depletion recovery. Free radical Biology & Medicine, 49(10), 1550–1560. [DOI:10.1016/j.freeradbiomed.2010.08.018] [PMID] [PMCID] Lu, X., Zhang, Y., Bai, H., Liu, J., Li, J., & Wu, B. (2018). Mitochondria-targeted antioxidant MitoTEMPO improves the post-thaw sperm quality. Cryobiology, 80, 26-29. [DOI:10.1016/j.cryobiol.2017.12.009] [PMID] Masoudi, R., Asadzadeh, N., & Sharafi, M. (2020). The mitochondria-targeted antioxidant Mito-TEMPO conserves rooster’s cooled semen quality and fertility potential. Theriogenology, 156, 236-241. [DOI:10.1016/j.theriogenology.2020.07.018] [PMID] Masoudi, R., Asadzadeh, N., & Sharafi, M. (2021). Effects of freezing extender supplementation with mitochondria-targeted antioxidant Mito-TEMPO on frozen-thawed rooster semen quality and reproductive performance. Animal Reproduction Science, 225, 106671. [DOI:10.1016/j.anireprosci.2020.106671] [PMID] Mohajer, M., & Dadashpour Davachi, N. (2022). Supplementation of cooling extender with l-carnitine preserves ram’s sperm during chilling storage. Iranian Journal of Veterinary Medicine, 1-20. [Unpublished]. [Link] Park, J., Min, J. S., Kim, B., Chae, U. B., Yun, J. W., & Choi, M. S., et al. (2015). Mitochondrial ROS govern the LPS-induced pro-inflammatory response in microglia cells by regulating MAPK and NF-κB pathways. Neuroscience Letters, 584, 191-196. [DOI:10.1016/j.neulet.2014.10.016] [PMID] Pung, Y. F., Sam, W. J., Stevanov, K., Enrick, M., Chen, C. L., Kolz, C., et al. (2013). Mitochondrial oxidative stress corrupts coronary collateral growth by activating adenosine monophosphate activated kinase-α signaling. Arteriosclerosis, Thrombosis, and Vascular Biology, 33(8), 1911-1919. [DOI:10.1161/ATVBAHA.113.301591] [PMID] [PMCID] Ruiz-Pesini, E., Díez-Sánchez, C., López-Pérez, M. J., & Enríquez, J. A. (2007).The role of the mitochondrion in sperm function: Is there a place for oxidative phosphorylation or is this a purely glycolytic process? Current Topics in Developmental Biology, 77, 3-19. [DOI:10.1016/S0070-2153(06)77001-6] [PMID] Shahverdi, A., Sharafi, M., Gourabi, H., Yekta, A. A., Esmaeili, V., & Sharbatoghli, M., et al. (2015). Fertility and flow cytometric evaluations of frozen-thawed rooster semen in cryopreservation medium containing low-density lipoprotein. Theriogenology, 83(1), 78–85. [DOI:10.1016/j.theriogenology.2014.07.044] [PMID] Sharafi, M., Zhandi, M., & Akbari Sharif, A. (2015). Supplementation of soybean lecithin-based semen extender by antioxidants: Complementary flowcytometric study on post-thawed ram spermatozoa. Cell and Tissue Banking, 16(2), 261–269.[DOI:10.1007/s10561-014-9458-5] [PMID] Sharafi, M., Zhandi, M., Shahverdi, A., & Shakeri, M. (2015).Beneficial effects of nitric oxide induced mild oxidative stress on post-thawed bull semen quality. International Journal of Fertility & Sterility, 9(2), 230–237. [PMID] Takahashi, M. (2012). Oxidative stress and redox regulation on in vitro development of mammalian embryos. The Journal of Reproduction and Development, 58(1), 1–9. [DOI:10.1262/jrd.11-138N] [PMID] Trnka, J., Blaikie, F. H., Smith, R. A., & Murphy, M. P. (2008). A mitochondria-targeted nitroxide is reduced to its hydroxylamine by ubiquinol in mitochondria. Free Radical Biology & Medicine, 44(7), 1406–1419. [DOI:10.1016/j.freeradbiomed.2007.12.036] [PMID] Yang, S. G., Park, H. J., Kim, J. W., Jung, J. M., Kim, M. J., & Jegal, H. G., et al. (2018). Mito-TEMPO improves development competence by reducing superoxide in preimplantation porcine embryos. Scientific Reports, 8(1), 10130. [DOI:10.1038/s41598-018-28497-5] [PMID] [PMCID] Yousef, A., Ghasemzadeh-Nava, H., Tajik, P., Akbarinejad, V., & Towhidi, A. (2022). Evaluation of soy lecithin efficacy in comparison with egg yolk on freezing of epididymal sperm in dogs. Iranian Journal of Veterinary Medicine, 16(2), 166-177. [Link] Zarei, F., Kia, H. D., Masoudi, R., Moghaddam, G., & Ebrahimi, M. (2021). Supplementation of ram’s semen extender with Mito-TEMPO I: Improvement in quality parameters and reproductive performance of cooled-stored semen. Cryobiology, 98, 215-218. [DOI:10.1016/j.cryobiol.2020.10.018] [PMID]
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مراجع | ||
Askarianzadeh, Z., Sharafi, M., & Karimi Torshizi, M. A. (2018).Sperm quality characteristics and fertilization capacity after cryopreservation of rooster semen in extender exposed to a magnetic field. Animal Reproduction Science, 198, 37-46. [DOI:10.1016/j.anireprosci.2018.08.043] [PMID]
Bajt, M. L., Farhood, A., Lemasters, J. J., & Jaeschke, H. (2008). Mitochondrial Bax translocation accelerates DNA fragmentation and cell necrosis in a murine model of acetaminophen hepatotoxicity. The Journal of Pharmacology and Experimental Therapeutics, 324(1), 8–14. [DOI:10.1124/jpet.107.129445] [PMID]
Bateni, Z., Azadi, L., Tavalaee, M., Kiani-Esfahani, A., Fazilati, M., & Nasr-Esfahani, M. H. (2014). Addition of Tempol in semen cryopreservation medium improves the post-thaw sperm function. Systems Biology in Reproductive Medicine, 60(4), 245–250. [DOI:10.3109/19396368.2014.897773] [PMID]
Chen, H., Chomyn, A., & Chan, D. C. (2005). Disruption of fusion results in mitochondrial heterogeneity and dysfunction. The Journal of Biological Chemistry, 280(28), 26185–26192. [DOI:10.1074/jbc.M503062200] [PMID]
Chen, P. I., Cao, A., Miyagawa, K., Tojais, N. F., Hennigs, J. K., & Li, C. G., et al. (2017). Amphetamines promote mitochondrial dysfunction and DNA damage in pulmonary hypertension. JCI Insight, 2(2), e90427. [DOI:10.1172/jci.insight.90427]
Choumar, A., Tarhuni, A., Lettéron, P., Reyl-Desmars, F., Dauhoo, N., & Damasse, J., et al. (2011). Lipopolysaccharide-induced mitochondrial DNA depletion. Antioxidants & Redox signaling, 15(11), 2837–2854. [DOI:10.1089/ars.2010.3713] [PMID]
Dikalova, A. E., Bikineyeva, A. T., Budzyn, K., Nazarewicz, R. R., McCann, L., & Lewis, W., et al. (2010). Therapeutic targeting of mitochondrial superoxide in hypertension. Circulation Research, 107, 106-116. [DOI:10.1161/CIRCRESAHA.109.214601] [PMID] [PMCID]
Du, K., Farhood, A., & Jaeschke, H. (2017). Mitochondria-targeted antioxidant Mito-Tempo protects against acetaminophen hepatotoxicity. Archives of Toxicology, 91(2), 761–773.[DOI:10.1007/s00204-016-1692-0] [PMID] [PMCID]
Fang, L., Bai, C., Chen, Y., Dai, J., Xiang, Y., & Ji, X., et al. (2014). Inhibition of ROS production through mitochondria-targeted antioxidant and mitochondrial uncoupling increases post-thaw sperm viability in yellow catfish. Cryobiology, 69(3), 386–393. [DOI:10.1016/j.cryobiol.2014.09.005] [PMID]
Feyzi, S., Sharafi, M., & Rahimi, S. (2018). Stress preconditioning of rooster semen before cryopreservation improves fertility potential of thawed sperm. Poultry Science, 97(7), 2582–2590. [DOI:10.3382/ps/pey067] [PMID]
Gómez-Torres, M. J., Medrano, L., Romero, A., Fernández-Colom, P. J., & Aizpurúa, J. (2017). Effectiveness of human spermatozoa biomarkers as indicators of structural damage during cryopreservation. Cryobiology, 78, 90-94. [DOI:10.1016/j.cryobiol.2017.06.008] [PMID]
Hamdan, M., Jones, K. T., Cheong, Y., & Lane, S. I. (2016). The sensitivity of the DNA damage checkpoint prevents oocyte maturation in endometriosis. Scientific Reports, 6, 36994.[DOI:10.1038/srep36994] [PMID] [PMCID]
Liang, H. L., Sedlic, F., Bosnjak, Z., & Nilakantan, V. (2010). SOD1 and MitoTEMPO partially prevent mitochondrial permeability transition pore opening, necrosis, and mitochondrial apoptosis after ATP depletion recovery. Free radical Biology & Medicine, 49(10), 1550–1560. [DOI:10.1016/j.freeradbiomed.2010.08.018] [PMID] [PMCID]
Lu, X., Zhang, Y., Bai, H., Liu, J., Li, J., & Wu, B. (2018). Mitochondria-targeted antioxidant MitoTEMPO improves the post-thaw sperm quality. Cryobiology, 80, 26-29. [DOI:10.1016/j.cryobiol.2017.12.009] [PMID]
Masoudi, R., Asadzadeh, N., & Sharafi, M. (2020). The mitochondria-targeted antioxidant Mito-TEMPO conserves rooster’s cooled semen quality and fertility potential. Theriogenology, 156, 236-241. [DOI:10.1016/j.theriogenology.2020.07.018] [PMID]
Masoudi, R., Asadzadeh, N., & Sharafi, M. (2021). Effects of freezing extender supplementation with mitochondria-targeted antioxidant Mito-TEMPO on frozen-thawed rooster semen quality and reproductive performance. Animal Reproduction Science, 225, 106671. [DOI:10.1016/j.anireprosci.2020.106671] [PMID]
Mohajer, M., & Dadashpour Davachi, N. (2022). Supplementation of cooling extender with l-carnitine preserves ram’s sperm during chilling storage. Iranian Journal of Veterinary Medicine, 1-20. [Unpublished]. [Link]
Park, J., Min, J. S., Kim, B., Chae, U. B., Yun, J. W., & Choi, M. S., et al. (2015). Mitochondrial ROS govern the LPS-induced pro-inflammatory response in microglia cells by regulating MAPK and NF-κB pathways. Neuroscience Letters, 584, 191-196. [DOI:10.1016/j.neulet.2014.10.016] [PMID]
Pung, Y. F., Sam, W. J., Stevanov, K., Enrick, M., Chen, C. L., Kolz, C., et al. (2013). Mitochondrial oxidative stress corrupts coronary collateral growth by activating adenosine monophosphate activated kinase-α signaling. Arteriosclerosis, Thrombosis, and Vascular Biology, 33(8), 1911-1919. [DOI:10.1161/ATVBAHA.113.301591] [PMID] [PMCID]
Ruiz-Pesini, E., Díez-Sánchez, C., López-Pérez, M. J., & Enríquez, J. A. (2007).The role of the mitochondrion in sperm function: Is there a place for oxidative phosphorylation or is this a purely glycolytic process? Current Topics in Developmental Biology, 77, 3-19. [DOI:10.1016/S0070-2153(06)77001-6] [PMID]
Shahverdi, A., Sharafi, M., Gourabi, H., Yekta, A. A., Esmaeili, V., & Sharbatoghli, M., et al. (2015). Fertility and flow cytometric evaluations of frozen-thawed rooster semen in cryopreservation medium containing low-density lipoprotein. Theriogenology, 83(1), 78–85. [DOI:10.1016/j.theriogenology.2014.07.044] [PMID]
Sharafi, M., Zhandi, M., & Akbari Sharif, A. (2015). Supplementation of soybean lecithin-based semen extender by antioxidants: Complementary flowcytometric study on post-thawed ram spermatozoa. Cell and Tissue Banking, 16(2), 261–269.[DOI:10.1007/s10561-014-9458-5] [PMID]
Sharafi, M., Zhandi, M., Shahverdi, A., & Shakeri, M. (2015).Beneficial effects of nitric oxide induced mild oxidative stress on post-thawed bull semen quality. International Journal of Fertility & Sterility, 9(2), 230–237. [PMID]
Takahashi, M. (2012). Oxidative stress and redox regulation on in vitro development of mammalian embryos. The Journal of Reproduction and Development, 58(1), 1–9. [DOI:10.1262/jrd.11-138N] [PMID]
Trnka, J., Blaikie, F. H., Smith, R. A., & Murphy, M. P. (2008). A mitochondria-targeted nitroxide is reduced to its hydroxylamine by ubiquinol in mitochondria. Free Radical Biology & Medicine, 44(7), 1406–1419. [DOI:10.1016/j.freeradbiomed.2007.12.036] [PMID]
Yang, S. G., Park, H. J., Kim, J. W., Jung, J. M., Kim, M. J., & Jegal, H. G., et al. (2018). Mito-TEMPO improves development competence by reducing superoxide in preimplantation porcine embryos. Scientific Reports, 8(1), 10130. [DOI:10.1038/s41598-018-28497-5] [PMID] [PMCID]
Yousef, A., Ghasemzadeh-Nava, H., Tajik, P., Akbarinejad, V., & Towhidi, A. (2022). Evaluation of soy lecithin efficacy in comparison with egg yolk on freezing of epididymal sperm in dogs. Iranian Journal of Veterinary Medicine, 16(2), 166-177. [Link]
Zarei, F., Kia, H. D., Masoudi, R., Moghaddam, G., & Ebrahimi, M. (2021). Supplementation of ram’s semen extender with Mito-TEMPO I: Improvement in quality parameters and reproductive performance of cooled-stored semen. Cryobiology, 98, 215-218. [DOI:10.1016/j.cryobiol.2020.10.018] [PMID]
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آمار تعداد مشاهده مقاله: 335 تعداد دریافت فایل اصل مقاله: 599 |