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1Academic Journal
Authors: I. D. Kuzhal, O. V. Pribushenya, I. V. Naumchik, I. V. Kurlovich, N. I. Ryabokon, И. Д. Кужель, О. В. Прибушеня, И. В. Наумчик, И. В. Курлович, Н. И. Рябоконь
Contributors: The work was performed within the framework of project 2.2.5 “Study of the spectrum of sperm DNA damage in reduced male fertility” of the State Research Program “Biotechnology-2” (2021–2025), Работа выполнена в рамках задания 2.2.5 «Изучение спектра повреждений ДНК спермиев при пониженной мужской фертильности» Государственной программы научных исследований «Биотехнологии-2» (2021–2025 гг.)
Source: Doklady of the National Academy of Sciences of Belarus; Том 67, № 4 (2023); 307-314 ; Доклады Национальной академии наук Беларуси; Том 67, № 4 (2023); 307-314 ; 2524-2431 ; 1561-8323 ; 10.29235/1561-8323-2023-67-4
Subject Terms: мужское бесплодие, comet assay, normozoospermia, pathozoospermia, male infertility, метод ДНК-комет, нормозооспермия, патозооспермия
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Relation: https://doklady.belnauka.by/jour/article/view/1142/1141; O’Neill, C. L. A worldwide profile of the utilization of sperm DNA fragmentation testing in relation to reproductive outcome / C. L. O’Neill, G. D. Palermo // Translational Andrology and Urology. – 2017. – Vol. 6, N 4. – P. 320−321. https://doi.org/10.21037/tau.2017.09.14; Zini, A. The benefits and limitations of sperm DNA testing in clinical practice / A. Zini // Translational Andrology and Urology. – 2017. – Vol. 6, N 4. – P. 326−327. https://doi.org/10.21037/tau.2017.09.09; World Health Organization. WHO laboratory manual for the examination and processing of human semen. 6th ed. – Geneva, Switzerland: World Health Organization; 2021. – 276 p.; The impact of single- and double-strand DNA breaks in human spermatozoa on assisted reproduction / A. Agarwal [et al.] // International Journal of Molecular Sciences. – 2020. – Vol. 21, N 11. – Art. 3882. https://doi.org/10.3390/ijms21113882; Sperm DNA fragmentation testing: Summary evidence and clinical practice recommendations / S. C. Esteves [et al.] // Andrologia. – 2021. – Vol. 53, N 2. – Art. e13874. https://doi.org/10.1111/and.13874; Ribas-Maynou, J. Single and double strand sperm DNA damage: different reproductive effects on male fertility / J. Ribas-Maynou, J. Benet // Genes. – 2019. – Vol. 10, N 2. – Art. 105. https://doi.org/10.3390/genes10020105; A limited number of double-strand DNA breaks is sufficient to delay cell cycle progression / J. van den Berg [et al.] // Nucleic Acids Research. – 2018. – Vol. 46, N 19. – P. 10132–10144. https://doi.org/10.1093/nar/gky786; Double-stranded sperm DNA damage is a cause of delay in embryo development and can impair implantation rates / A. Casanovas [et al.] // Fertility and Sterility. – 2019. – Vol. 111, N 4. – P. 699–707. https://doi.org/10.1016/j.fertnstert.2018.11.035; DNA double strand breaks in human spermatozoa can be predictive for assisted reproductive outcome / A. Garolla [et al.] // Reproductive BioMedicine Online. – 2015. – Vol. 31, N 1. – P. 100–107. https://doi.org/10.1016/j.rbmo.2015.03.009; Investigating the level of DNA double-strand break in human spermatozoa and its relation to semen characteristics and IVF outcome using phospho-histone H2AX antibody as a biomarker / O. Coban [et al.] // Andrology. – 2020. – Vol. 8, N 2. – P. 421–426. https://doi.org/10.1111/andr.12689; Double stranded sperm DNA breaks, measured by Comet assay, are associated with unexplained recurrent miscarriage in couples without a female factor / J. Ribas-Maynou [et al.] // PLoS One. – 2012. – Vol. 7, N 9. – Art. e44679. https://doi.org/10.1371/journal.pone.0044679; Clinical utility of sperm DNA fragmentation testing: practice recommendations based on clinical scenarios / A. Agarwal [et al.] // Translational Andrology and Urology. – 2016. – Vol. 5, N 6. – P. 935−950. https://doi.org/10.21037/tau.2016.10.03; Double-stranded DNA breaks hidden in the neutral Comet assay suggest a role of the sperm nuclear matrix in DNA integrity maintenance / J. Ribas-Maynou [et al.] // Molecular Human Reproduction. – 2014. – Vol. 20, N 4. – P. 330−340. https://doi.org/10.1093/molehr/gat090; The ability of sperm selection techniques to remove single- or double-strand DNA damage / M. Enciso [et al.] // Asian Journal of Andrology. – 2011. – Vol. 13, N 5. – P. 764−768. https://doi.org/10.1038/aja.2011.46; https://doklady.belnauka.by/jour/article/view/1142
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2Academic Journal
Authors: Voroshilina, E. S., Zornikov, D. L., Ivanov, A. V., Pochernikov, D. G., Panacheva, E. A., Ворошилина, Е. С., Зорников, Д. Л., Иванов, А. В., Почерников, Д. Г., Паначева, Е. А.
Subject Terms: SEMEN MICROBIOTA, REAL-TIME PCR, CLUSTER ANALYSIS, SEMEN ANALYSIS, NORMOZOOSPERMIA, МИКРОБИОТА ЭЯКУЛЯТА, ПЦР-РВ, КЛАСТЕРНЫЙ АНАЛИЗ, СПЕРМОГРАММА, НОРМОЗООСПЕРМИЯ
File Description: application/pdf
Relation: Scopus; http://elib.usma.ru/handle/usma/6955
Availability: http://elib.usma.ru/handle/usma/6955
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3Academic Journal
Authors: V. V. Evdokimov, V. B. Turovetskiy, E. V. Shmalgauzen, V. I. Muronets, В. В. Евдокимов, В. Б. Туровецкий, Е. В. Шмальгаузен, В. И. Муронец
Source: Andrology and Genital Surgery; Том 16, № 1 (2015); 69-72 ; Андрология и генитальная хирургия; Том 16, № 1 (2015); 69-72 ; 2412-8902 ; 2070-9781 ; 10.17650/2070-9781-2015-1
Subject Terms: патозоосп, hydrogen dioxide, glyceraldehyde-3-phosphate dehydrogenase, active sperm motility, total sperm motility, reactive oxygen species, antioxidant protection, reduced glutathione, sperm analyzer, normozoospermia, pathozoospermia, перекись водорода, глицеральдегид-3-фосфатдегидрогеназа, активная подвижность сперматозоидов, общая подвижность сперматозоидов, активные формы кислорода, антиоксидантная защита, восстановленный глутатион, спермоанализатор, нормозооспермия
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Relation: https://agx.abvpress.ru/jour/article/view/134/128; Сухих Г.Т., Божедомов В.А. Мужское бесплодие. Практическое руководство для урологов и гинекологов. М.: Эксмо, 2009. С. 240. [Sukhikh G.T., Bozhedomov V.A. Male infertility. Practical guide for urologists and gynecologists. Moscow: Eksmo, 2009. P. 240. (In Russ.)].; Андрология. Клинические рекомендации. Под ред. П.А. Щеплева. М.: Медпрактика, 2012. С. 155. [Andrology. Clinical recommendations. P.A. Scheplev (ed.). Moscow: Medpraktika, 2012. 155 p. (In Russ.)].; Бесплодие. Серия технических докладов ВОЗ. 2001. C. 76. [Infertility. Technical Report Series of WHO. 2001. P. 76. (In Russ.)].; Андрология. Мужское здоровье и дисфункция репродуктивной системы. Под ред. Э. Нишлага, Г.М. Бере. М.: МИА, 2005. С. 450. [Andrology. Men,s health and reproductive system dysfunction. E. Nishlag, G.M. Bere (eds.). Moscow: MIA, 2005. P. 450. (In Russ.)].; Андреева М.В., Шилейко Л.В., Остроумова Т.В. и др. Показатели спермограмм в летне-осенний период 2010 г. по сравнению с таковыми в 2007–2009 гг. Андрология и генитальная хирургия 2013;(1):11–4. [Andreeva M.V., Shileyko L.V., Ostroumova T.V. et al. Indicators of semen analysis in summer and autumn of 2010 as compared with those in 2007–2009. Andrologiya i genital’naya khirurgiya = Andrology and Genital Surgery 2013;(1):11–4. (In Russ.)].; Westhoff W., Kamp G. Glyceraldegyde-3phosphate dehydrogenase is bound to the fibrous seath of mammalian spermatozoa. J Cell Sci 1997;110(Pt 15):1821–9.; Welch J.E., Brown P.L., O,Brien D.A. et al. Human glyceraldehyde-3-phosphate dehydrogenase-2 gene is expressed specificalle in spermatogenic cells. J Androl 2000;21(2):328–38.; Шуцкая Ю.Ю., Элькина Ю.Л., Куравский М.Л. и др. Исследование глицеральдегид-3-фосфатдегидрогеназы из сперматозоидов человека. Биохимия 2008;73(2):228–37. [Shutskaya Yu.Yu., Elkina Yu.L., Kuravsky M.L. et al. Investigation of glyceraldehyde-3-phosphate dehydrogenase from human sperm. Biokhimiya = Biochemistry 2008;73(2): 228–37. (In Russ.)].; Agarwal A., Saleh R.A., Bedaiwy M.A. Role of reactive oxygen species in the pathophysiology of human reproduction. Fertil Steril 2003;79(4):829–43.; Божедомов В.А., Торопцева М.В., Ушакова И.В. и др. Активные формы кислорода и репродуктивная функция мужчин (обзор литературы). Андрология и генитальная хирургия 2011;(3):10–6. [Bozhedomov V.A., Toroptseva M.V., Ushakova I.V. et al. Active forms of oxygen and male reproductive function (literature review). Andrologiya i genital’naya khirurgiya = Andrology and Genital Surgery 2011;(3):10–6. (In Russ.)].; WHO laboratory manual for the examination and processing of human semen. 5th ed. WHO, 2010. P. 271.; Элькина М.М., Атрощенко М.М., Брагина Е.Е. Окисление глицеральдегид3-фосфатдегидрогеназы приводит к снижению подвижности сперматозоидов. Биохимия 2011;76(2):326–31. [Elkina M.M., Atroschenko M.M., Bragina E.E. Oxidation of glyceraldehyde-3-phosphate dehydrogenase leads to a reduction in sperm mobility. Biokhimiya = Biochemistry 2011;76(2):326–31. (In Russ.)].; https://agx.abvpress.ru/jour/article/view/134