Elahi D., Muller D.C. Carbohydrate metabolism in the elderly. Eur. J. Clin. Nutr. 2000; 54 (Suppl. 3): S112-20. https://doi.org/10.1038/sj.ejcn.1601032
Karpin V.A. Metabolic syndrome as a gerontological problem (literature review). Uspekhi gerontologii. 2020; 33(3): 479–87. https://doi.org/10.34922/AE.2020.33.3.008 (in Russian)
Zhu M., Liu X., Liu W., Lu Y., Cheng J., Chen Y. β cell aging and age-related diabetes. Aging (Albany NY). 2021; 13(5): 7691-706. https://doi.org/10.18632/aging.202593
Dontsov A.V., Vasilyeva L.V. Gender-specific characteristic of metabolic syndrome in the elderly. Uspekhi gerontologii. 2013; 26(1): 105–10. (in Russian)
Moisa S.S., Nozdrachev A.D. Disturbances of carbohydrate metabolism and factors stimulating its development in ontogenesis. Uspekhi gerontologii. 2011; 24(1): 61-8. (in Russian)
Page G.L., Laight D., Cummings M.H. Thiamine deficiency in diabetes mellitus and the impact of thiamine replacement on glucose metabolism and vascular disease. Int. J. Clin. Pract. 2011; 65 (6): 684–90. https://doi.org/10.1111/j.1742-1241.2011.02680.x
Sarandol E., Tas S., Serdar Z., Dirican M. Effects of thiamine treatment on oxidative stress in experimental diabetes. Bratisl. Lek. Listy. 2020; 121(3): 235-41. https://doi.org/10.4149/BLL_2020_036
Mee L.N.S., Sekar V.T., Subramanian V.S., Maedler K., Said H.M. Pancreatic beta cells and islets take up thiamin by a regulated carrier-mediated process: studies using mice and human pancreatic preparations. Am. J. Physiol. Gastrointest. Liver Physiol. 2009; 297 (1): G197–G206. https://doi.org/10.1152/ajpgi.00092.2009
Anwar A., Ahmed Azmi M., Siddiqui J., Panhwar G., Shaikh F., Ariff M. Thiamine level in type I and type II diabetes mellitus patients: a comparative study focusing on hematological and biochemical evaluations. Cureus. 2020; 12(5): e8027. https://doi.org/10.7759/cureus.8027
Oh S.H., Witek R.P., Bae S.H., Darwiche H., Jung Y., Pi L. et al. Detection of transketolase in bone marrow-derived insulin-producing cells: benfotiamine enhances insulin synthesis and glucose metabolism. Stem. Cells Dev. 2009; 18(1): 37-46. https://doi.org/10.1089/scd.2007.0255
Gur’eva I.V, Levin O.S. Diabetic polyneuropathy. Consilium Medicum. 2014; 16(4): 12-19. (in Russian)
Gromova O.A., Torshin I.Yu., Sorokina M.A., Gromov A.N. Magnesium and vitamin B2 supplementation is an important nutritional resource of sports medicine. Meditsinskiy Sovet. 2018; 21: 216-30. https://doi.org/https://doi.org/10.21518/2079-701X-2018-21-216-230 (in Russian)
Klinov S.V., Kurganov B.I., Pekel N.D., Berezovskii V.M. Inhibition of muscle glycogen phosphorylase b by vitamin B2 and its coenzyme forms. Biochem. Int. 1986; 13(1):139-45.
Chebotareva N.A., Meremyanin A.V., Makeeva V.F., Eronina T.B., Kurganov B.I. Binding of glycogen phosporylase b and phosporylase kinase to glycogen under conditions of molecular crowding. Inhibiting effect of FAD. Biokhimiya. 2009; 74(50): 691-8. (in Russian)
Spasov A.A., Chepljaeva N.I., Vorob’ev E.S. Glycogen phosphorylase inhibitors in the regulation of carbohydrate metabolism in type 2 diabetes. Bioorganicheskaya Khimiya. 2016; 42(2): 150–9. https://doi.org/10.7868/S0132342316020135 (in Russian)
Boyko E.R., Nilsen О., Boyko S.G., Kalinin А.G., Potolitsyna N.N. Indicators of riboflavin supply of the body and the activity of glutathione reductase in residents of the European North of Russia. Fiziologiya Cheloveka. 2004; 30(2): 122–8. (in Russian)
Aleshin V.A., Mkrtchyan G.V., Bunik V.I. Mechanisms of the non-coenzyme action of thiamine: protein targets and medical significance. Biokhimiya. 2019; 84, (8): 1051-75. https://doi.org/10.1134/S0320972519080013 (in Russian)
Panin L.E. Homeostasis and problems of circumpolar health (methodological aspects of adaptation). Bulleten` Sibirskogo otdeleniya RAMN. 2010; 30(3): 6–11. (in Russian)
Boyko E.R. Physiological and Biochemical Bases of Human Life in the North [Fiziologo-biokhimicheskie osnovy zhiznedeyatel’nosti cheloveka na Severe]. Ekaterinburg: UB RAS; 2005. (in Russian)
Bichkaeva F.A. Endocrine regulation of metabolic processes in humans in the North [Endokrinnaya regulyatsiya metabolicheskikh protsessov u cheloveka na Severe]. Ekaterinburg: UB RAS; 2008. (in Russian)
Bezrukikh M.M., Son’kin V.D., Farber D.A. Age-specific physiology (development physiology of the child) [Vozrastnaya fiziologiya (fiziologiya razvitiya rebyonka)]. 2nd ed. Moscow: Izdatel’skii tsentr «Akademiya»; 2007. (in Russian)
Unguryanu T.N., Grjibovski A.M. Analysis of three independent groups using non-parametric Kruskal-Wallis test in STATA Software. Ekologiya cheloveka. 2014; 6: 55-8. (in Russian)
Delisle H., Desilets M.C., Vargas E.R., Garrel D. Metabolic syndrome in three ethnic groups using current definitions. Appl. Physiol. Nutr. Metab. 2008; 33: 356–60. https://doi.org/10.1139/H08-003
Nikitin Y.P., Voevoda М.I., Simonova G.I. Diabetes mellitus and metabolic syndrome in Siberia and in the Far East. Vestnik RAMN. 2012; 1: 66-74. (in Russian)
Averyanova I.V., Maksimov A.L., Borisenko N.S. Lipid and carbohydrate metabolism in indigenous and caucasian young males living in the Magadan region. Zhurnal mediko-biologicheskikh issledovaniy. 2016; 2: 5-15. https://doi.org/10.17238/issn2308-3174.2016.2.5 (in Russian)
Babenko L.G., Boyko E.R. Ethno-social features of obesity and diabetes mellitus mordidity among residents of Russian European North. Izvestiya Komi nauchnogo tsentra UrO RAN. 2010; 2: 32-9. (in Russian)
Lavigne-Robichaud M., Moubarac J.C., Lantagne-Lopez S., Johnson-Down L., Batal M., Laouan-Sidi A.E. et. al. Diet quality indices in relation to metabolic syndrome in an Indigenous Cree (Eeyouch) population in northern Québec. Canada Public Health Nutr. 2018; 21(1):172-80. https://doi.org/10.1017/S136898001700115X
Bichkaeva F.A., Tkachev A.V., Boyko E.R., Kulacova I.V., Tretyakova T.V. Availability of vitamin B1 in the population of the European North. Fiziologiya Cheloveka. 2003; 29(1): 133–5. (in Russian)
Potolitsyna N.N., Boyko E.R. Vitamin status in residents of the European North of Russia and its correlation with geographical latitude. Zhurnal mediko-biologicheskikh issledovaniy. 2018; 6 (4): 376–86. https://doi.org/10.17238/issn2542-1298.2018.6.4.376 (in Russian)
Berti P.R., Fallu C., Cruz Agudo Y. A systematic review of the nutritional adequacy of the diet in the Central Andes. Rev. Panam. Salud. Publica. 2014; 36(5): 314-23.
Whitfield K.C., Karakochuk C.D., Liu Y., McCann A., Talukder A., Kroeun H. et. al. Poor thiamin and riboflavin status is common among women of childbearing age in rural and urban Cambodia. J. Nutr. 2015; 145(3): 628-33. https://doi.org/10.3945/jn.114.203604
Sivaprasad M., Shalini T., Yadagiri Reddy P., Seshacharyulu M., Madhavi G., Naveen Kumar B. et. al. Prevalence of vitamin deficiencies in an apparently healthy urban adult population: Assessed by subclinical status and dietary intake. Nutrition. 2019; 63-64: 106-13. https://doi.org/10.1016/j.nut.2019.01.017
Brachet P., Chanson A., Demigné C., Batifoulier F., Alexandre-Gouabau M-C., Tyssandier V. et.al. Age-associated B vitamin deficiency as a determinant of chronic diseases. Nutr. Res. Rev. 2004; 17: 55–68. https://doi.org/10.1079/NRR200478
Toffanello E.D., Inelmen E.M., Minicuci N., Campigotto F., Sergi G., Coin A. et. al. Ten-year trends in vitamin intake in free-living healthy elderly people: the risk of subclinical malnutrition. J. Nutr. Health Aging. 2011; 15(2): 99-103. https://doi.org/10.1007/s12603-011-0020-x
Moskowitz A., Graver A., Giberson T., Berg K., Liu X., Uber A. et.al. The relationship between lactate and thiamine levels in patients with diabetic ketoacidosis. J. Crit. Care. 2014; 29(1): 182.e5–182.e8. https://doi.org/10.1016/j.jcrc.2013.06.008
Maglysh S.S., Gorbach Z.V., Konovalenko O.V. Regulation of gluconeogenesis in the liver of vitamin B1-deficient rats. Biokhimiya. 1990; 55(8): 1491–7. (in Russian)
Plows J., Budin F., Andersson R.A.M., Mills V.J., Mace K., Davidge S.T. et.al. The effects of myo-inositol and B and D vitamin supplementation in the db/+ mouse model of gestational diabetes mellitus. Nutrients. 2017; 9(2): 141. https://doi.org/10.3390/nu9020141
Reddi A.S., Ho P.K., Camerini-Davalos R.A. The role of riboflavin in carbohydrate metabolism. Adv. Exp. Med. Biol. 1979; 119: 243-50. https://doi.org/10.1007/978-1-4615-9110-8_35
Petrov S.A. Non-coenzymic effects of thiamine and its metabolites. Biomeditsinskaya khimiya. 2006; 52(4): 335–45. (in Russian)