1. Kontrogianni-Konsantopoulos A, Benian G, Granziet H. Advances in muscle physiology and pathophysiology. J Biomed Biotechnol. 2012;2012:930836. doi:10.n55/2012/930836
2. MartinsAR, Nachbar RT, Gorjao R, Vinolo MA, Festuccia WT, Lambertucci RH et al. Mechanisms underlying skeletal muscle insulin resistance induced by fatty acids: importance of the mitochondrial function. Lipids Health Dis. 2012;11:30. doi:10.1186/1476-511X-11-30
3. Литвинова Л. С., Кириенкова Е. В., Мазунин И. О., Василенко М.А., Фаттахов Н. С. Патогенез инсулинорезистентности при метаболическом ожирении. Биомедицинская химия. 2015;61(1 ):70—82. doi:10.18097/PBMC20156101070
4. Wifi MA, Assem M, Elsherif RH, El-Azab HA, Saif A. Tolllike receptors-2 and -9 (TLR2 and TLR9) gene polymorphism in patients with type 2 diabetes and diabetic foot. Medicine (Baltimore). 2017;96(17):e676. doi:10.1097/MD.0000000000006760
5. Taha IM, Abdu Allah AM, Abd El Gayed E. M. Expression of toll-like receptor 4 and its connection with type 2 diabetes mellitus. Cell Mol Biol (Noisy-le-grand). 2018;64(13):15-20.
6. Frayling TM, Timpson NJ, Weedon MN, Zeggini E, Freathy RM, Lindgren CM et al. A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity. Science. 2007;316(5826):889-894. doi:10.1126/science.1141634
7. Silbernagel G, Renner W, Grammer TB, Hugl SR, Bertram J, Kleber ME et al. Association of TCF7L2 SNPs with age at onset of type 2 diabetes and proinsulin/insulin ratio but not with glucagonlike peptide 1. Diabetes Metab Res Rev. 2011;27(5):499-505. doi:10.1002/dmrr.1194
8. Эпидемиология сердечно-сосудистых заболеваний в различных регионах России (ЭССЕ-РФ). Обоснование и дизайн исследования. Научно-организационный комитет проекта ЭССЕ-РФ. Профилактическая медицина 2013;6:25-34.
9. Alberti KG, Eckel RH, Grundy SM, Zimmet PZ, Cleeman JI, Donato KA et al. Harmonizing the metabolic syndrome: a joint interim statement of the International Diabetes Federation Task Force on Epidemiology and Prevention; National Heart, Lung, and Blood Institute; American Heart Association; World Heart Federation; International Atherosclerosis Society; International Association for the Study of Obesity. Circulation. 2009;120 (16):1640-1645. doi:10.1161/CIRCULATTONAHA.109.192644
10. Rodriguez S, Gaunt TR, Day IN. Hardy-Weinberg equilibrium testing of biological ascertainment for Mendelian randomization studies. Am J Epidemiol. 2009;169(4):505-514. doi:10.1093/aje/kwn359
11. Livingstone KM, Celis-Morales C, Papandonatos GD, Erar B, Florez JC, Jablonski KA et al. FTO genotype and weight loss: systematic review and meta-analysis of 9563 individual participant data from eight randomised controlled trials. Br Med J. 2016;354: i4707. doi:10.1136/bmj.i4707
12. Dang LC, Samanez-Larkin GR, Smith CT, Castrellon JJ, Perkins SF, Cowan RL et al. FTO affects food cravings and interacts with age to influence age-related decline in food cravings. Physiol Behav. 2018;192:188-193. doi:10.1016/j.physbeh.2017.12.013
13. Jin T. Current understanding on role of the Wnt signaling pathway effector TCF7L2 in glucose homeostasis. Endocr Rev. 2016;37(3):254-277. doi:10.1210/er.2015-1146
14. Хромова Н. В., Ротарь О. П., Ерина А. М., Шав-шин Д. А., Алексеева Н. П., Костарева А. А. и др. Взаимосвязь rs9939609 полиморфизма гена FTO с метаболическим синдромом и его компонентами в Российской популяции. Артериальная гипертензия. 2013;19(4):311-319. doi.org: 10.18705/1607-419X-2013-19-4-311-319.
15. In Russian]. dbSNP. Available from: https://www.ncbi.nlm. nih.gov/snp/rs9939609
16. Хромова Н. В., Ротарь О. П., Дудорова Е. А., Колесова Е. П., Могучая Е. В., Бояринова М.А. и др. Полиморфизм гена122537 TCF7L2 — генетический маркер метаболического синдрома или только его компонентов? Трансляционная медицина. 2014;3:82-87.
17. Silbernagel G, Renner W, Grammer TD, Hugl SR, Bertram J, Kleber ME et al. Association of TCF7L2 SNPs with age at onset of type 2 diabetes and proinsulin/insulin ratio but not with glucagon-like peptide 1. Diabetes Metab Res Rev. 2011;27(5):499-505. doi.org/10.1002/dmrr.1194.
18. Stolerman ES, Manning AK, McAteer JB, Fox CS, Dupuis J, Meigs JB et al. TCF7L2 variants are associated with increased proinsulin/insulin ratios but not obesity traits in the Framingham Heart Study. Diabetologia. 2009;52(4):614-620. doi:10. 1007/s00125-009-1266-2