The change in the functional status of native and cryopreserved spermatozoa of bulls under the influence of caffeine

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The aim of the study is to study the effect of caffeine on the functional status of native and thawed bovine spermatozoa. Incubation of intact non-frozen bovine spermatozoa during 4 hours with caffeine increased the number of capacitated and acrosome-reactive cells, while the incubation in the presence of combination prolactin/ guanosine triphosphate did not affect the proportion of uncapacitated, capacitateded, and acrosome-reactive cells. Pre-incubation of spermatozoa and the subsequent freezing led to the increase in number of capacitated spermatozoa and acrosome-reactive cells in thawed samples, incubated with the caffeine, and there was no effect on functional status of spermatozoa incubated with prolactin and guanosine triphosphate. Thus, pre-incubation of spermatozoa before freezing with the caffeine altered their functional status after thawing (the decrease in the number of capacitated cells), while the combined action of prolactin and guanosine triphosphate did not affect indicator. 

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作者简介

I. Chistyakova

All-Russian research institute of genetics and breeding of farm animals –  the branch of Federal Research Center Livestock

编辑信件的主要联系方式.
Email: itjerena7@gmail.com

postgraduate student

俄罗斯联邦, Sankt-Peterburg-Pushkin, Moscovskoe sh., 55 a

T. Kuzmina

All-Russian research institute of genetics and breeding of farm animals –  the branch of Federal Research Center Livestock

Email: itjerena7@gmail.com

doctor of biological sciences

俄罗斯联邦, Sankt-Peterburg-Pushkin, Moscovskoe sh., 55 a

V. Denisenko

All-Russian research institute of genetics and breeding of farm animals –  the branch of Federal Research Center Livestock

Email: itjerena7@gmail.com

doctor of biological sciences

俄罗斯联邦, Sankt-Peterburg-Pushkin, Moscovskoe sh., 55 a

参考

  1. Nongbua T. Adding bovine seminal plasma prior to freezing improves post-thaw bull sperm kinematics but decreases mitochondrial activity // Systems biology in reproductive medicine. – 2018.– V. 64.– № 3.– P. 183-190.
  2. Paudel B., Gervasi M.G., Porambo J., Caraballo D. Sperm capacitation is associated with phosphorylation of the testis-specific radial spoke protein Rsph6a// Biology of Reproduction. – 2018. – V.100. - №2. – P.440-454.
  3. Murphy E.M. Effect of increasing equilibration time of diluted bull semen up to 72 h prior to freezing on spermquality parameters and calving rate following artificial insemination // Theriogenology.– 2018.– V. 108.– P. 217-222.
  4. Talukdar D.J., Ahmed K. and Talukdar P. Cryocapacitation and fertility of cryopreserved semen// International Journal of Livestock Research. – 2015. - № 5. – P.11–18.
  5. Alm-Kristiansen A.H. In vitro studies of Norwegian Red bovine semen immobilized and cryopreserved in alginate solid gel network // Reproduction of domestic animals.– 2018.– V. 53.– № 2.– P. 365-370.
  6. Naresh S. Effect of cooling (4°C) and cryopreservation on cytoskeleton actin and protein tyrosine phosphorylation in buffalo spermatozoa// Cryobiology. – 2016. – V. 72. - № 1. – P. 7‒13.
  7. Ded L. In vivo exposition to 17B-estradiol cause premature capacitation of epididymal mouse sperm // Biology of reproduction.– 2012.– V.87.– № l.– P. 433-433.
  8. Forero-Gonzalez R.A., Celeghini E.C.C., Raphael C.F., Andrade A.F.C., Bressan F.F., Arruda R.P. Effects of bovine sperm cryopreservation using different freezing techniques and cryoprotective agents on plasma, acrosomal and mitochondrial membranes// Andrology. – 2012. - № 44. – P. 154‒159.
  9. Kadirvel G, Kathiravan P, Kumar S. Protein tyrosine phosphorylation and zona binding ability of in vitro capacitated and cryopreserved buffalo spermatozoa// Theriogenology. – 2011. – V. 75. - № 9. – P. 1630‒1639.
  10. Elkhawagah A.R. Evaluation of in vitro capacitation of buffalo frozen/thawed sperm by different techniques // Journal of reproduction and infertility.– 2013.– V. 4.– № 3.– P. 19-28.
  11. Breininger E., Cetica P.D., Beconi M.T. Capacitation inducers act through diverse intracellular mechanisms in cryopreserved bovine sperm // Theriogenology.– 2010.– V. 74.– №.6.– P. 1036-1049.
  12. Денисенко В.Ю., Бойцева Е.Н., Кузьмина Т.И. Освобождение Са2+ из внутриклеточных депо сперматозоидов Bos taurus в зависимости от их функционального состояния // Цитология. – 2015.– Т. 57. – № 3. – С. 233-239.
  13. Mostek A., Dietrich M.A., Słowińska M., Ciereszko A. Cryopreservation of bull semen is associated with carbonylation of sperm proteins // Theriogenology.– 2017.– V. 92.– P. 95-102.
  14. Cormier N., Bailey J. L. A differential mechanism is involved during heparin- and cryopreservation-induced capacitation of bovine spermatozoa // Biology of reproduction.– 2003.– V.69.– P. 177-185.
  15. Денисенко В.Ю., Кузьмина Т.И., Бойцева Е.Н. Индукция капацитации сперматозоидов Bos taurus до криоконсервации повышает их жизнеспособность после размораживания // Гены и клетки.– 2018. – Т. XIII.– № 1. – С. 86-91.

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