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168 related items for PubMed ID: 23990951
41. Impact of KCNQ1, CDKN2A/2B, CDKAL1, HHEX, MTNR1B, SLC30A8, TCF7L2, and UBE2E2 on risk of developing type 2 diabetes in Thai population. Plengvidhya N, Chanprasert C, Chongjaroen N, Yenchitsomanus PT, Homsanit M, Tangjittipokin W. BMC Med Genet; 2018 Jun 05; 19(1):93. PubMed ID: 29871606 [Abstract] [Full Text] [Related]
42. Positive association between variations in CDKAL1 and type 2 diabetes in Han Chinese individuals. Liu Y, Yu L, Zhang D, Chen Z, Zhou DZ, Zhao T, Li S, Wang T, Hu X, Feng GY, Zhang ZF, He L, Xu H. Diabetologia; 2008 Nov 05; 51(11):2134-7. PubMed ID: 18766326 [No Abstract] [Full Text] [Related]
43. Variants in the fat mass- and obesity-associated (FTO) gene are not associated with obesity in a Chinese Han population. Li H, Wu Y, Loos RJ, Hu FB, Liu Y, Wang J, Yu Z, Lin X. Diabetes; 2008 Jan 05; 57(1):264-8. PubMed ID: 17959933 [Abstract] [Full Text] [Related]
44. Different glucose tolerance status and incident cardiovascular disease and all-cause mortality among elderly Iranians. Mirbolouk M, Hajebrahimi MA, Akbarpour S, Tohidi M, Azizi F, Hadaegh F. Geriatr Gerontol Int; 2016 Dec 05; 16(12):1263-1271. PubMed ID: 26463623 [Abstract] [Full Text] [Related]
45. Validation of type 2 diabetes risk variants identified by genome-wide association studies in Han Chinese population: a replication study and meta-analysis. Chang YC, Liu PH, Yu YH, Kuo SS, Chang TJ, Jiang YD, Nong JY, Hwang JJ, Chuang LM. PLoS One; 2014 Dec 05; 9(4):e95045. PubMed ID: 24736664 [Abstract] [Full Text] [Related]
46. FTO, abdominal adiposity, fasting hyperglycemia associated with elevated HbA1c in Japanese middle-aged women. Tanaka M, Yoshida T, Bin W, Fukuo K, Kazumi T. J Atheroscler Thromb; 2012 Dec 05; 19(7):633-42. PubMed ID: 22504289 [Abstract] [Full Text] [Related]
47. CDKAL1 gene rs7756992 A/G polymorphism and type 2 diabetes mellitus: a meta-analysis of 62,567 subjects. Li YY, Wang LS, Lu XZ, Yang ZJ, Wang XM, Zhou CW, Xu J, Qian Y, Chen AL. Sci Rep; 2013 Nov 04; 3():3131. PubMed ID: 24185407 [Abstract] [Full Text] [Related]
48. The Uyghur population and genetic susceptibility to type 2 diabetes: potential role for variants in CDKAL1, JAZF1, and IGF1 genes. Song M, Zhao F, Ran L, Dolikun M, Wu L, Ge S, Dong H, Gao Q, Zhai Y, Zhang L, Yan Y, Liu F, Yang X, Guo X, Wang Y, Wang W. OMICS; 2015 Apr 04; 19(4):230-7. PubMed ID: 25785549 [Abstract] [Full Text] [Related]
49. Variants in the FTO and CDKAL1 loci have recessive effects on risk of obesity and type 2 diabetes, respectively. Wood AR, Tyrrell J, Beaumont R, Jones SE, Tuke MA, Ruth KS, GIANT consortium, Yaghootkar H, Freathy RM, Murray A, Frayling TM, Weedon MN. Diabetologia; 2016 Jun 04; 59(6):1214-21. PubMed ID: 26961502 [Abstract] [Full Text] [Related]
50. The longitudinal association of common susceptibility variants for type 2 diabetes and obesity with fasting glucose level and BMI. Webster RJ, Warrington NM, Beilby JP, Frayling TM, Palmer LJ. BMC Med Genet; 2010 Oct 08; 11():140. PubMed ID: 20929593 [Abstract] [Full Text] [Related]
51. Impact of common type 2 diabetes risk gene variants on future type 2 diabetes in the non-diabetic population in Korea. Park SE, Lee WY, Oh KW, Baek KH, Yoon KH, Kang MI, Son HY, Lee WC. J Hum Genet; 2012 Apr 08; 57(4):265-8. PubMed ID: 22377714 [Abstract] [Full Text] [Related]
52. The carriage of risk variants of CDKAL1 impairs beta-cell function in both diabetic and non-diabetic patients and reduces response to non-sulfonylurea and sulfonylurea agonists of the pancreatic KATP channel. Chistiakov DA, Potapov VA, Smetanina SA, Bel'chikova LN, Suplotova LA, Nosikov VV. Acta Diabetol; 2011 Sep 08; 48(3):227-35. PubMed ID: 21611789 [Abstract] [Full Text] [Related]
53. FTO gene variants (rs9939609, rs8050136 and rs17817449) and type 2 diabetes mellitus risk: A Meta-Analysis. Amine Ikhanjal M, Ali Elouarid M, Zouine C, El Alami H, Errafii K, Ghazal H, Alidrissi N, Bakkali F, Benmoussa A, Hamdi S. Gene; 2023 Dec 15; 887():147791. PubMed ID: 37696421 [Abstract] [Full Text] [Related]
54. Cumulative effect and predictive value of genetic variants associated with type 2 diabetes in Han Chinese: a case-control study. Qian Y, Lu F, Dong M, Lin Y, Li H, Dai J, Jin G, Hu Z, Shen H. PLoS One; 2015 Dec 15; 10(1):e0116537. PubMed ID: 25587982 [Abstract] [Full Text] [Related]
55. Association study of a common variant near IRS1 with type 2 diabetes mellitus in Chinese Han population. Tang Y, Han X, Sun X, Lv C, Zhang X, Guo W, Ren Q, Luo Y, Zhang X, Zhou X, Ji L. Endocrine; 2013 Feb 15; 43(1):84-91. PubMed ID: 22576021 [Abstract] [Full Text] [Related]
57. Association of risk variants for type 2 diabetes and hyperglycemia with gestational diabetes. Huopio H, Cederberg H, Vangipurapu J, Hakkarainen H, Pääkkönen M, Kuulasmaa T, Heinonen S, Laakso M. Eur J Endocrinol; 2013 Sep 15; 169(3):291-7. PubMed ID: 23761423 [Abstract] [Full Text] [Related]
58. The association between common genetic variation in the FTO gene and metabolic syndrome in Han Chinese. Wang T, Huang Y, Xiao XH, Wang DM, Diao CM, Zhang F, Xu LL, Zhang YB, Li WH, Zhang LL, Zhang Y, Sun XF, Zhang Q. Chin Med J (Engl); 2010 Jul 15; 123(14):1852-8. PubMed ID: 20819567 [Abstract] [Full Text] [Related]
59. Genetic variants for type 2 diabetes and new-onset cancer in Chinese with type 2 diabetes. Ma RC, So WY, Tam CH, Luk AO, Ho JS, Wang Y, Lam VK, Lee HM, Kong AP, Tong PC, Xu G, Chow CC, Ng MC, Yang XL, Chan JC. Diabetes Res Clin Pract; 2014 Feb 15; 103(2):328-37. PubMed ID: 24468095 [Abstract] [Full Text] [Related]
60. Gene-gene interactions lead to higher risk for development of type 2 diabetes in a Chinese Han population: a prospective nested case-control study. Zhou W, Li Y, Zhang L, Shi Y, Wang C, Zhang D, Liu X, Mao Z, Li L. Lipids Health Dis; 2018 Jul 28; 17(1):179. PubMed ID: 30055620 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]