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    Academic Journal

    Source: Epidemiology and Vaccinal Prevention; Том 20, № 5 (2021); 107-114 ; Эпидемиология и Вакцинопрофилактика; Том 20, № 5 (2021); 107-114 ; 2619-0494 ; 2073-3046

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    Relation: https://www.epidemvac.ru/jour/article/view/1369/788; Wang X, Chen C, Wang L, et al. Conception, early pregnancy loss, and time to clinical pregnancy: a population-based prospective study. Fertil Steril. 2003;79(3):577-84. https://doi:10.1016/s0015-0282 (02) 04694-0.; Larsen EC, Christiansen OB, Kolte AM, et al. New insights into mechanisms behind miscarriage. BMC Med. 2013;11:154-65. https://doi:10.1186/1741-7015-11-154.; Hillier SL, Nugent RP, Eschenbach DA, et al. Association between bacterial vaginosis and preterm delivery of a low-birth-weight infant. The Vaginal Infections and Prematurity Study Group. N Engl J Med. 1995; 333(26):1737-1742. https://doi:10.1056/NEJM199512283332604.; Moore DE, Soules MR, Klein NA, et al. Bacteria in the transfer catheter tip influence the live-birth rate after in vitro fertilization. Fertil Steril. 2000;74(6):1118-1124. https://doi:10.1016/S0015- 0282(00)01624-1.; Hyman RW, Herndon CN, Jiang H, et al. The dynamics of the vaginal microbiome during infertility therapy with in vitro fertilization-embryo transfer. J Assist Reprod Genet. 2012; 29(2):105-115. https:// doi:10.1007 /s10815-011-9694-6.; Hyman RW, Fukushima M, Jiang H, et al. Diversity of the vaginal microbiome correlates with preterm birth. Reprod Sci. 2014; 21(1):32-40. https://doi:10,1177 / 1933719113488838.; Sobel JD. Vaginitis. N Engl J Med. 1997;337(26):1896-1903. https://doi:10.1056/NEJM199712253372607.; Cicinelli E, Matteo M, Tinelli R, et al. Chronic endometritis due to common bacteria is prevalent in women with recurrent miscarriage as confirmed by improved pregnancy outcome after antibiotic treat- ment. Reprod Sci. 2014; 21(5):640-647. https://doi:10.1177/1933719113508817.; Gevers D, Knight R, Petrosino JF, et al. The Human Microbiome Project: a community resource for the healthy human microbiome. PLoS Biol. 2012; 10(8):e1001377. https://doi:10.1371/journal. pbio.1001377.; Lloyd-Price J., Abu-Ali G., Huttenhower C. The healthy human microbiome. Genome medicine. 2016;8(1):1-11. https://doi:10.1186/s13073-016-0307-y; Anderson G. Endometriosis pathoetiology and pathophysiology: roles of vitamin A, estrogen, immunity, adipocytes, gut microbiome and melatonergic pathway on mitochondria regulation. Biomolecular concepts. 2019;10(1): 133-149. https://doi:10.1515/bmc-2019-0017.; Magoč T., Salzberg S. L. FLASH: fast length adjustment of short reads to improve genome assemblies. Bioinformatics. 2011;27(21):2957-2963. https://doi:10.1093/bioinformatics/btr507.; Bolyen E, Rideout JR, Dillon MR, et al. Reproducible, interactive, scalable and extensible microbiome data science using QIIME 2. Nat Biotechnol. 2019;37(8):852-857. https://doi:10.1038/s41587-019-0209-9.; Callahan BJ, McMurdie PJ, Rosen MJ, et al. DADA2: high‐resolution sample inference from Illumina amplicon data. Nat Methods. 2016;13:581‐583. https://doi:10.1038/nmeth.3869.; Bokulich NA, Kaehler BD, Rideout JR, Dillon M, Bolyen E, Knight R, et al. Optimizing taxonomic classification of marker-gene amplicon sequences with QIIME 2’s q2-feature-classifier plugin. Microbiome. 2018; 6(1):1-17. https://doi:10.1186/s40168-018-0470-z.; McDonald D, Price MN, Goodrich J, et al. An improved Greengenes taxonomy with explicit ranks for ecological and evolutionary analyses of bacteria and archaea. ISME J. 2012;6: 610‐618. https:// doi:10.1038/ismej.2011.139.; Faith DP. Conservation evaluation and phylogenetic diversity. Biol Cons. 1992;61:1‐10. https://doi:10.1016/0006-3207(92)91201-3.; Ravel J, Gajer P, Abdo Z, et al. Vaginal microbiome of reproductive-age women. Proc Natl Acad Sci U S A. 2011;108:4680–4687. https://doi:10.1073/pnas.1002611107.; Spear GT, French AL, Gilbert D, et al. Human alpha‐amylase present in lower‐genital‐tract mucosal fluid processes glycogen to support vaginal colonization by Lactobacillus. J Infect Dis. 2014; 210(7):1019–1028. https://doi:10.1093/infdis/ jiu231.; Smith S. B., Ravel J. The vaginal microbiota, host defence and reproductive physiology. The Journal of physiology. 2017; 595(2):451-463. https://doi:10.1113/JP271694.; Wira CR, Fahey JV, Sentman CL, et al. Innate and adaptive immunity in female genital tract: cellular responses and interactions. Immunol Rev. 2005; 206(1):306–335. https://doi:10.1111/j.0105- 2896.2005.00287.x.; Petricevic L, Domig KJ, Nierscher FJ, et al. Characterisation of the vaginal Lactobacillus microbiota associated with preterm delivery. Sci Rep. 2014;4(1):1-6. https://doi:10.1038/srep05136.; Santacruz A, Collado MC, Garcia-Valdes L, et al. Gut microbiota composition is associated with body weight, weight gain and biochemical parameters in pregnant women. The British Journal of Nutrition. 2010;104(1):83-92. https://doi:10.1017 / S0007114510000176.; Cani PD, Osto M, Geurts L, et al. Involvement of gut microbiota in the development of low-grade inflammation and type 2 diabetes associated with obesity. Gut Microbes. 2012;3(4):279-288. https:// doi:10.4161/gmic.19625.; Koren O, Goodrich JK, Cullender TC, et al. Host remodeling of the gut microbiome and metabolic changes during pregnancy. Cell. 2012;150(3):470-80. https://doi:10.1016/j.cell.2012.07.008.; https://www.epidemvac.ru/jour/article/view/1369

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    Academic Journal

    Source: Medical Immunology (Russia); Том 12, № 1-2 (2010); 129-132 ; Медицинская иммунология; Том 12, № 1-2 (2010); 129-132 ; 2313-741X ; 1563-0625 ; 10.15789/1563-0625-2010-1-2

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    Relation: https://www.mimmun.ru/mimmun/article/view/55/54; Барышников А.Ю., Шишкин Ю.В. Иммунологические проблемы апоптоза. -М., 2002. -291 с.; Бурова А.А., Абдуллаева С.А., Торганова Е.Н. Основные свойства возбудителя хламидиоза и его роль в развитии инфекции урогенитального тракта // Журн. микробиологии, эпидемиологии и иммунобиологии. -1999. -№ 4. -С. 107.; Владимирская Е.Б., Масчан А.А., Румянцев А.Г. Апоптоз и его роль в развитии опухолевого роста // Гематол. и траннсфузиол. -1997. -Т. 42, № 5. -С 4-9.; Зенков Н.К., Меньшикова Е.Б., Вольский Н.Н., Козлов В.А. Внутриклеточный окислительный стресс и апоптоз // Успехи современной биологии. -1999. -Т. 119, № 5. -С. 440-450.; Новиков В.С. Программированная клеточная гибель. -СПб.: Наука. -1996. -276 с.; Нестерова И.В. Особенности функционирования противовирусного иммунтета. Цитокины и воспаление. -Т. 4, № 3. -С. 89.; Сидоренко С.П. Fas/СD95-опосредованный апоптоз в патогенезе лимфоидных новообразований // Эксперим. онкол. -1990. -Т. 20. -С. 15-28.; Толыбеков Ф.С. Морфогенез и вопросы патогенеза инфекционных процессов, вызванных хламидиями / Автореф. дис. … д-ра мед. наук. - Л., 1979. -32 с.; Holzman D. Cellar apoptosis: on death and dying // ASM News. -1994. -Vol. 60, N 12. -Р. 634.; Hussain L.A. Investigation of the complement reseptor 3 (CD 11b/CD 18) in human rectal epithelium // Clin. Exp. Immunol. -1995. -Vol. 102, N 2. - P. 384-388.; https://www.mimmun.ru/mimmun/article/view/55

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