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    Academic Journal

    Source: Eurasian Journal of Medical and Natural Sciences; Vol. 5 No. 10 Part 2 (2025): Eurasian Journal of Medical and Natural Sciences; 123-130 ; Евразийский журнал медицинских и естественных наук; Том 5 № 10 Part 2 (2025): Евразийский журнал медицинских и естественных наук; 123-130 ; Yevrosiyo tibbiyot va tabiiy fanlar jurnali; Jild 5 Nomeri 10 Part 2 (2025): Евразийский журнал медицинских и естественных наук; 123-130 ; 2181-287X

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    Academic Journal

    Source: Eurasian Journal of Medical and Natural Sciences; Vol. 5 No. 9 (2025): Eurasian Journal of Medical and Natural Sciences; 110-120 ; Евразийский журнал медицинских и естественных наук; Том 5 № 9 (2025): Евразийский журнал медицинских и естественных наук; 110-120 ; Yevrosiyo tibbiyot va tabiiy fanlar jurnali; Jild 5 Nomeri 9 (2025): Евразийский журнал медицинских и естественных наук; 110-120 ; 2181-287X

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  16. 16
    Academic Journal

    Source: Eurasian Journal of Medical and Natural Sciences; Vol. 5 No. 10 (2025): Eurasian Journal of Medical and Natural Sciences; 160-171 ; Евразийский журнал медицинских и естественных наук; Том 5 № 10 (2025): Евразийский журнал медицинских и естественных наук; 160-171 ; Yevrosiyo tibbiyot va tabiiy fanlar jurnali; Jild 5 Nomeri 10 (2025): Евразийский журнал медицинских и естественных наук; 160-171 ; 2181-287X

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  17. 17
    Academic Journal

    Contributors: The authors declare no funding for this study., Авторы заявляют об отсутствии финансирования

    Source: The Russian Archives of Internal Medicine; Том 15, № 4 (2025); 262-274 ; Архивъ внутренней медицины; Том 15, № 4 (2025); 262-274 ; 2411-6564 ; 2226-6704

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    Relation: https://www.medarhive.ru/jour/article/view/2044/1429; https://www.medarhive.ru/jour/article/view/2044/1437; Feldman M., Friedman L.S., Brandt L.J et al. Gastrointestinal and Liver Disease. Pathophysiology, diagnosis, management. Sleisinger and Fordtran’s, Elsevier, 11th Edition, 2021. p.2488; Younussi Z., Anstee Q.M., Marietti M. et al. Global burden of NAFLD and NASH: trends, predictors, risk factors and prevention. Nat Rew Gastroenterol Hepatol. 2018; 15(1): 11-20 https//: doi:10.1038/nrgastro.2017.109; Ye Q., Zou B., Yeo Y.H. at al. Global prevalence, incidence and outcomes of non-obese or lean non-alcoholic fatty liver disease: a systematic review and meta-analysis. Lancet Gastroenterol Hepatol. 2020;5(8): 739-752 https//: doi:10.1016/S2468-1253(20)30077-7; DiStefano J.K., Gerhard G.S. NAFLD in normal weight individuals. Diabetologia & Metabolic Syndrome, 2022; 14:45 https//:doi.org/10.1186/s13098-022-00814-z; Francanzani A.L., Petta S., Lombardi R. at al. Liver and cardiovascular damage in patients with lean nonalcoholic fatty liver disease and association with visceral obesity. Clin Gastroenterol Hepatol. 2017; 15(10): 1604-1611 https//: doi:10.14309/ctg.0000000000000326; Estes C., Razavi H., Loombra R. et al. Modeling the epidemic of nonalcoholic fatty liver disease demonstrates an exponential increase in burden disease. Hepatology. 2018;67(1):123 — 133 https//: doi:10.1002/hep.29466; Kim H.J, Lee K.E, Kim D.J. at al. Metabolic significantce of nonalcoholic fatty liver disease in nonobese, nondiabetic adults. Arch intern Med. 2004; 164(19):2169-2175 https//: doi:10.1001/archinte.164.19.2169.; Akyuz U., Yesil A., Yilmaz Y. Characterization of lean patients with nonalcoholic fatty liver disease: potential role of high hemoglobin levels. Scand J Gastroenterol. 2015; 50(3): 341-346 https//: doi:10.3109/00365521.2014.983160. Epub 2014 Dec 26.; Cruz ACD, Buganesi E., Gerge J. at al. 379 characteristics and longterm prognosis of lean patients with nonalcoholic fatty liver disease. Gastroenterology. 2014;146(5): S-909 https//: doi:10.1016/S0016-5085(14)63307-2; Feldman A., Wernly B., Strebinger G et al. Liver-related mortality is increased in lean nonalcoholic liver fatty liver disease compared to overwieght and obese subjects. J Gastrointest Liver Dis. 2021; 30(3): 366-373 https//: doi:10.15403/jgld-3622; Yanoussi Z.M., Yilmaz Y., Yu M.L. at al. Clinical and patient-reported outcomes from patients with nonalcoholic fatty liver disease across the world: data from the global non-alcoholic steatohepatitis (NASH)/non-alcoholic fatty liver disease (NAFLD) registry. Clin Gastroenterol Hepatol. 2021; 20(10): 2296-2306.e6 https//:doi. org/10/1016/j.cgh.2021.11.004; Hagstrom H., Nasr P., Ekstedt M. at al. Risk for development of severe liver disease in lean patients with nonalcoholic fatty liver disease: a long-term follow-up study. Hepatol Commun. 2018;2(1): 1236-1249 https//: doi:10.1002/hep4.1124; Lee M., Yee H.Y., Li X. et al. 2019 GLOBAL NAFLD Prevalence: A Systematic Review and Meta-analysis. Clin Gastroenterol Hepatol. 2022; 20(12):2809-2817.e28 https//: doi:10.1016/j.cgh.2022.12.002; Kim S., Fenech M.F., Kim P.J. Nutritionally recommended food for semi — to strict vegetarian diets based on large-scale nutrient composition data. Sci Rep. 2018;8(1):4344 https//: doi:10.3390/ijms21124479; Wallace T.C., Bluzstjan J.K., Caudill M.A. at al. Choline: the underconsumed and underappreciated essential nutrient. Nutr Today. 2018;53(6): 240-253 https//: doi:10.1097/NT.0000000000000302; DiStefano J.K., Fructose-mediated effects on gene expression and epigenetic mechanisms associated with NAFLD pathogenesis. Cell Mol Life Sci. 2020;77(11): 2079 — 2090 https//: doi:10.1007/s00018-019-03390-0.; DiStefano J.K., Shaibi G.Q. The relationship between excessive dietary fructose consumption and pediatric fatty liver disease. Pediatr Obes. 2020;16: e12759 https//: doi:10.1111/ijpo.12759; Jones R.B., Alderete T.L., Kim J.S. at al. High intake of dietary fructose in overweight/obese teenagers associated with depletion of Eubacterium and Streptococcus in gut microbiome. Gut Microbes. 2019;10(6): 712 — 719 https//: doi:10.1111/ijpo.12759; Russo E., Leoncini G., Esposito P. at al. Fructose and uric acid: major mediators of cardiovascular disease risk starting at pediatric age. Int J Mol Sci 2020;21(12): 4479 https//: doi:10.3390/ijms21124479; Parry S.A., Hodson L. Influence of dietary macronutrients on liver fat accumulation and metabolism. J Investig Med. 2017;65(8): 1102-1115 https//: doi:10.1136/jim-2017-000524.; Nakatsuka A., Matsuyama M., Yamaguchi S. at al. Insufficiency of phosphatidylethanolamine N-methyltransferase is risk for lean non-alcoholic steatohepatitis. Sci Rep. 2016;6: 21721 https//: doi:10.1038/srep21721; Chalasani N., Younussi Z., Lavine J.E. at al. The diagnosis and management of nonalcoholic fatty liver disease: practice guidance from American association for the study of liver diseases. Hepatology. 2018;67(1): 328-357 https//: doi:10.1002/hep.29367; Martin K., Hatab A., Athwal V.S. at al. Genetic contribution to nonalcoholic fatty liver disease and prognostic implications. Curr Diab Rep. 2021; 21(3):8 https//: doi:10.1007/s11892-021-01377-5; Bale G., Vishnubhotla R.V., Mitnala S. at al. Whole-exome sequencing identifies a variant in phosphatidylethanolamine — N-methyltransferase gene to be associated with lean-nonalcoholic fatty liver disease. J Clin Exp Hepatol. 2019;9(5): 561-568 https//: doi:10.1016/j.jceh.2019.02.001; DiStefano J.K. NAFLD and NASH in postmenopausal women: implications for diagnosis and treatment. Endocrinology.2020; 161(10):bqaa134 https//: doi:10.1210/endocr/bqaa134; Decraecker M., Dutartre D., Hiriart J.B. at al. Long-term prognosis of patients with alcohol-related liver disease or non-alcoholic fatty liver disease according to metabolic syndrome or alcohol use. Liver Int. 2021;42(2): 350-362 https//: doi:10.1111/liv.15081; Chang Y., Cho Y.K., Kim Y. et al. Nonheavydrinking and worsening of noninvasive fibrosis markers in nonalcoholic fatty liver disease: a cohord study. Hepatology. 2019;69(1): 64-75 https//: doi:10.1002/hep.30170; Hajifathalian K., Torabi Sagvand B., McCullough A.J. Effect of alcohol consumption on survival in nonalcoholic fatty liver disease: a national prospective cohort study. Hepatology. 2019;70(2): 511-521 https//: doi:10.1002/hep.30226; Okamoto M., Miyake T., Kitai K. at al. Cigarette smoking is a risk factor for the onset of fatty liver disease in nondrinkers: a longitudinal cohort study. PLos ONE. 2018; 13(4): e0195147 https://doi.org/10.1371/journal.pone.0195147; Тихомирова А.С., Кисляков В.А., Байкова И.Е. и др. Клинико-морфологические параллели полиморфизма гена PNLPA3 у пациентов с неалкогольной жировой болезнью печени. Терапевтический архив. 2018; 90(2): 85-89. https//: doi.org/10.26442/terarkh.201890285-88; Никитин И.Г., Тихомирова А.С., Жинжило Т.А. и др. Связь цирроза печени в исходе неалкогольной жировой болезни печени с полиморфизмом гена PNLPA3/rs738409. Архивъ внутренней медицины. 2020; 10(2) :148 — 154. https//:doi.org/10.20514/2226-6704-2020-10-2-148-154; Lin H., Wong G.L., Chan A.W. at al. Association of genetic variations with NAFLD in lean individuals. Liver Int. 2022;42(1): 149 — 160 https//: doi:10.1111/liv.15078; Akinci B., Onay H., Demir T. et al. Clinical presentations, metabolic abnormalities end-organ complications in patients in patients with familial partial lipodystrophy. Metabolism. 2017;72: 109 — 119 https//: doi:10.1016/j.metabol.2017.04.010; Brown R.J., Araujo-Vilar D., Cheung P.T. et al. The diagnosis and management of lipodystrophy syndromes: a multi-society practice guideline. J Clin Endocrinol Metab. 2016;101(12): 4500 — 4511 https//: doi:10.1210/jc.2016-2466; Petta S., Gliresi A., Bianco J. at al. Insulin resistance and hyperandrogenism drive steatosis and fibrosis risk in young females with PCOS. PlosONE, 2017;12(11): e0186136 https//: doi:10.3390/nu13061848; Lonardo A., Ballestri S., Mantovani A. at al. Pathogenesis of hypothyroidism-induced NAFLD: evidence for a distinct disease entity? Dig Liver Dis. 2019;51(4): 462 — 470 https//: doi:10.1016/j.dld.2018.12.014; Youngs R., Caviglia G.P., Govaero O. at al. Long-term outcomes and predictive ability of non-invasive scoring systems in patients with non-alcoholic fatty liver disease. J Hepatol. 2021; 75(4): 786 -794 https//: doi:10.1016/j.jhep.2021.05.008; Schattenberg J.M., Anstee Q.M., Caussy C. at al. Differences between current clinical guidelines for screening, diagnosis and management of nonalcoholic fatty liver disease and real-world practice: a targeted literature review. Expert Rev Gastroenterol Hepatol. 2021;15(11): 1253-1266 https//: doi:10.1080/17474124.2021.1974295; Bjorkstrom K., Franzen S., Eliasson B. at al. Risk factors for severe liver disease in patients with type 2 diabetes. Clin Gastroenterol Hepatol. 2019;17(13):2769-2775.e4 https//: doi:10.1016/j.cgh.2019.04.038; Hamurcu Varol P., Kaya E., Alphan E. et al. Role of intensive dietary and lifestyle interventions in the treatment of lean nonalcoholic liver disease patiettents. Eur J Gastroenterol Hepatol. 2020;32(10): 1352- 1357 https//: doi:10.1097/MEG.0000000000001656.; Ahlquist E., Storm P., Karajamaki A. et al. Novel subgroups of adult-onset diabetes and their association with outcomes: a data driven cluster analysis of six variables. Lancet Diabetes Endocrinol. 2018;6(5)361 — 369 https//: doi:10.1016/S2213-8587(18)30051-2; Lee G., You H.J., Bajaj J.S. at al. Distinct signatures of gut microbiome and metabolites associated with significant fibrosis in non-obese NAFLD. Nat Commun. 2020;11(1):4982 https//: doi:10.1038/s41467-020-18754-5.; Gibilino G., Sartini A., Gitto S. at al. the other side of malnutrition in inflammatory bowel disease (IBD): non-alcoholic fatty liver disease. Nutrients.2021;13(8): 2772 https//: doi:10.3390/nu13082772; https://www.medarhive.ru/jour/article/view/2044

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    Academic Journal

    Source: SCIENTIFIC JOURNAL OF APPLIED AND MEDICAL SCIENCES; Vol. 4 No. 9 (2025): SCIENTIFIC JOURNAL OF APPLIED AND MEDICAL SCIENCES; 44-48 ; НАУЧНЫЙ ЖУРНАЛ ПРИКЛАДНЫХ И МЕДИЦИНСКИХ НАУК; Том 4 № 9 (2025): SCIENTIFIC JOURNAL OF APPLIED AND MEDICAL SCIENCES; 44-48 ; 2181-3469

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  19. 19
    Academic Journal

    Source: Issues of Science and Education: New Approaches and Current Studies; ; Вопросы науки и образования: новые подходы и актуальные исследования

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    Relation: https://interactive-plus.ru/e-articles/950/Action950-585695.pdf; Калашникова М.Ф. Метаболический синдром: современный взгляд на концепцию, методы профилактики и лечения / М.Ф. Калашникова // Эффективная фармакотерапия. Эндокринология. – 2013. – №6(55) [Электронный ресурс]. – Режим доступа: https://umedp.ru/articles/metabolicheskiy_sindrom_sovremennyy_vzglyad_na_kontseptsiyu_metody_profilaktiki_i_lecheniya.html (дата обращения: 10.08.2025).; Маснавиева Л.Б. Полиморфизм генов LEPR, PPARG и PPARGC1A и развитие метаболических нарушений у пациентов с вибрационной болезнью / Л.Б. Маснавиева, Н.П. Чистова, О.В. Наумова [и др.] // Гигиена и санитария. – 2021. – Т. 100. №7. – С. 711–716 [Электронный ресурс]. – Режим доступа: https://j-morphology.com/0016–9900/article/download/639229/154605 (дата обращения: 11.08.2025). DOI 10.47470/0016-9900-2021-100-7-711-716. EDN HRWVAL; Михеева О.М. Метаболический синдром как проблема полиморбидности / О.М. Михеева, И.А. Комиссаренко // Эффективная фармакотерапия. – 2013. – №43. – С. 10–11 [Электронный ресурс]. – Режим доступа: https://umedp.ru/upload/iblock/5ba/5ba2176519af67b45c09e585e684e2b6.pdf (дата обращения: 11.08.2025).; Соснова Е.А. Метаболический синдром / Е.А. Соснова // Архив акушерства и гинекологии им. В.Ф. Снегирева. – 2016. – №4 [Электронный ресурс]. – Режим доступа: https://cyberleninka.ru/article/n/metabolicheskiy-sindrom-1 (дата обращения: 14.08.2025).; Хрипун И.А. Тестостерон как инструмент метаболического контроля мужского здоровья (обзор литературы) / И.А. Хрипун, З.Р. Гусова, Е.О. Дзантиева [и др.] // Медицинский вестник Юга России. – 2014. – №4 [Электронный ресурс]. – Режим доступа: https://cyberleninka.ru/article/n/testosteron-kak-instrument-metabolicheskogo-kontrolya-muzhskogo-zdorovya-obzor-literatury (дата обращения: 10.08.2025).; Данные Всемирной организации здравоохранения [Электронный ресурс]. – Режим доступа: https://www.who.int/ru/news-room/fact-sheets/detail/obesity-and-overweight (дата обращения: 12.08.2025).

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