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Items: 1 to 20 of 127

1.

Lack of interaction of beta-cell-function-associated variants with hypertension on change in fasting glucose and diabetes risk: the Framingham Offspring Study.

de Miguel-Yanes JM, Porneala B, Pencina MJ, Fox CS, Florez JC, Siscovick DS, Dupuis J, Meigs JB.

J Hypertens. 2013 May;31(5):1001-9. doi: 10.1097/HJH.0b013e32835f5a83.

2.

Progression from optimal blood glucose and pre-diabetes to type 2 diabetes in a high risk population with or without hypertension in Isfahan, Iran.

Janghorbani M, Amini M.

Diabetes Res Clin Pract. 2015 Jun;108(3):414-22. doi: 10.1016/j.diabres.2015.03.002. Epub 2015 Mar 13.

PMID:
25814432
3.

Variants at the endocannabinoid receptor CB1 gene (CNR1) and insulin sensitivity, type 2 diabetes, and coronary heart disease.

de Miguel-Yanes JM, Manning AK, Shrader P, McAteer JB, Goel A, Hamsten A; PROCARDIS, Fox CS, Florez JC, Dupuis J, Meigs JB.

Obesity (Silver Spring). 2011 Oct;19(10):2031-7. doi: 10.1038/oby.2011.135. Epub 2011 Jun 2.

4.

Pharmacogenetic association of hypertension candidate genes with fasting glucose in the GenHAT Study.

Irvin MR, Lynch AI, Kabagambe EK, Tiwari HK, Barzilay JI, Eckfeldt JH, Boerwinkle E, Davis BR, Ford CE, Arnett DK.

J Hypertens. 2010 Oct;28(10):2076-83. doi: 10.1097/HJH.0b013e32833c7a4d.

5.

The effect of FOXA2 rs1209523 on glucose-related phenotypes and risk of type 2 diabetes in Danish individuals.

Banasik K, Hollensted M, Andersson E, Sparsø T, Sandbaek A, Lauritzen T, Jørgensen T, Witte DR, Pedersen O, Hansen T.

BMC Med Genet. 2012 Feb 12;13:10. doi: 10.1186/1471-2350-13-10.

6.

Genetic risk score of 46 type 2 diabetes risk variants associates with changes in plasma glucose and estimates of pancreatic β-cell function over 5 years of follow-up.

Andersson EA, Allin KH, Sandholt CH, Borglykke A, Lau CJ, Ribel-Madsen R, Sparsø T, Justesen JM, Harder MN, Jørgensen ME, Jørgensen T, Hansen T, Pedersen O.

Diabetes. 2013 Oct;62(10):3610-7. doi: 10.2337/db13-0362. Epub 2013 Jul 8.

7.

PROX1 gene variant is associated with fasting glucose change after antihypertensive treatment.

Gong Y, McDonough CW, Beitelshees AL, Karnes JH, O'Connell JR, Turner ST, Chapman AB, Gums JG, Bailey KR, Boerwinkle E, Johnson JA, Cooper-DeHoff RM.

Pharmacotherapy. 2014 Feb;34(2):123-30. doi: 10.1002/phar.1355. Epub 2013 Oct 9.

8.

Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes.

Strawbridge RJ, Dupuis J, Prokopenko I, Barker A, Ahlqvist E, Rybin D, Petrie JR, Travers ME, Bouatia-Naji N, Dimas AS, Nica A, Wheeler E, Chen H, Voight BF, Taneera J, Kanoni S, Peden JF, Turrini F, Gustafsson S, Zabena C, Almgren P, Barker DJ, Barnes D, Dennison EM, Eriksson JG, Eriksson P, Eury E, Folkersen L, Fox CS, Frayling TM, Goel A, Gu HF, Horikoshi M, Isomaa B, Jackson AU, Jameson KA, Kajantie E, Kerr-Conte J, Kuulasmaa T, Kuusisto J, Loos RJ, Luan J, Makrilakis K, Manning AK, Martínez-Larrad MT, Narisu N, Nastase Mannila M, Ohrvik J, Osmond C, Pascoe L, Payne F, Sayer AA, Sennblad B, Silveira A, Stancáková A, Stirrups K, Swift AJ, Syvänen AC, Tuomi T, van 't Hooft FM, Walker M, Weedon MN, Xie W, Zethelius B; DIAGRAM Consortium; GIANT Consortium; MuTHER Consortium; CARDIoGRAM Consortium; C4D Consortium, Ongen H, Mälarstig A, Hopewell JC, Saleheen D, Chambers J, Parish S, Danesh J, Kooner J, Ostenson CG, Lind L, Cooper CC, Serrano-Ríos M, Ferrannini E, Forsen TJ, Clarke R, Franzosi MG, Seedorf U, Watkins H, Froguel P, Johnson P, Deloukas P, Collins FS, Laakso M, Dermitzakis ET, Boehnke M, McCarthy MI, Wareham NJ, Groop L, Pattou F, Gloyn AL, Dedoussis GV, Lyssenko V, Meigs JB, Barroso I, Watanabe RM, Ingelsson E, Langenberg C, Hamsten A, Florez JC.

Diabetes. 2011 Oct;60(10):2624-34. doi: 10.2337/db11-0415. Epub 2011 Aug 26.

9.

Type 2 diabetes risk alleles near BCAR1 and in ANK1 associate with decreased β-cell function whereas risk alleles near ANKRD55 and GRB14 associate with decreased insulin sensitivity in the Danish Inter99 cohort.

Harder MN, Ribel-Madsen R, Justesen JM, Sparsø T, Andersson EA, Grarup N, Jørgensen T, Linneberg A, Hansen T, Pedersen O.

J Clin Endocrinol Metab. 2013 Apr;98(4):E801-6. doi: 10.1210/jc.2012-4169. Epub 2013 Mar 1.

PMID:
23457408
10.

Common polymorphisms in MTNR1B, G6PC2 and GCK are associated with increased fasting plasma glucose and impaired beta-cell function in Chinese subjects.

Tam CH, Ho JS, Wang Y, Lee HM, Lam VK, Germer S, Martin M, So WY, Ma RC, Chan JC, Ng MC.

PLoS One. 2010 Jul 8;5(7):e11428. doi: 10.1371/journal.pone.0011428.

11.

Association study of type 2 diabetes genetic susceptibility variants and risk of pancreatic cancer: an analysis of PanScan-I data.

Pierce BL, Austin MA, Ahsan H.

Cancer Causes Control. 2011 Jun;22(6):877-83. doi: 10.1007/s10552-011-9760-5. Epub 2011 Mar 29.

PMID:
21445555
12.

Genetic Evidence for Causal Relationships Between Maternal Obesity-Related Traits and Birth Weight.

Tyrrell J, Richmond RC, Palmer TM, Feenstra B, Rangarajan J, Metrustry S, Cavadino A, Paternoster L, Armstrong LL, De Silva NM, Wood AR, Horikoshi M, Geller F, Myhre R, Bradfield JP, Kreiner-Møller E, Huikari V, Painter JN, Hottenga JJ, Allard C, Berry DJ, Bouchard L, Das S, Evans DM, Hakonarson H, Hayes MG, Heikkinen J, Hofman A, Knight B, Lind PA, McCarthy MI, McMahon G, Medland SE, Melbye M, Morris AP, Nodzenski M, Reichetzeder C, Ring SM, Sebert S, Sengpiel V, Sørensen TI, Willemsen G, de Geus EJ, Martin NG, Spector TD, Power C, Järvelin MR, Bisgaard H, Grant SF, Nohr EA, Jaddoe VW, Jacobsson B, Murray JC, Hocher B, Hattersley AT, Scholtens DM, Davey Smith G, Hivert MF, Felix JF, Hyppönen E, Lowe WL Jr, Frayling TM, Lawlor DA, Freathy RM; Early Growth Genetics (EGG) Consortium.

JAMA. 2016 Mar 15;315(11):1129-40. doi: 10.1001/jama.2016.1975. Erratum in: JAMA. 2016 Apr 19;315(15):1661.

13.

CLOCK gene variation is associated with incidence of type-2 diabetes and cardiovascular diseases in type-2 diabetic subjects: dietary modulation in the PREDIMED randomized trial.

Corella D, Asensio EM, Coltell O, Sorlí JV, Estruch R, Martínez-González MÁ, Salas-Salvadó J, Castañer O, Arós F, Lapetra J, Serra-Majem L, Gómez-Gracia E, Ortega-Azorín C, Fiol M, Espino JD, Díaz-López A, Fitó M, Ros E, Ordovás JM.

Cardiovasc Diabetol. 2016 Jan 7;15:4. doi: 10.1186/s12933-015-0327-8.

14.

Joint associations of physical activity and hypertension with the development of type 2 diabetes among urban men and women in Mainland China.

Xu F, Ware RS, Tse LA, Wang Y, Wang Z, Hong X, Chan EY, Dunstan DW, Owen N.

PLoS One. 2014 Feb 13;9(2):e88719. doi: 10.1371/journal.pone.0088719. eCollection 2014.

15.

Polymorphisms within the novel type 2 diabetes risk locus MTNR1B determine beta-cell function.

Staiger H, Machicao F, Schäfer SA, Kirchhoff K, Kantartzis K, Guthoff M, Silbernagel G, Stefan N, Häring HU, Fritsche A.

PLoS One. 2008;3(12):e3962. doi: 10.1371/journal.pone.0003962. Epub 2008 Dec 17.

16.

Association of glucokinase regulatory protein polymorphism with type 2 diabetes and fasting plasma glucose: a meta-analysis.

Li H, Xu R, Peng X, Wang Y, Wang T.

Mol Biol Rep. 2013 Jun;40(6):3935-42. doi: 10.1007/s11033-012-2470-6. Epub 2013 Jan 10.

PMID:
23307301
17.

Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: PPARG2 (Pro12Ala), IGF2BP2, TCF7L2 and FTO variants confer a significant risk.

Sanghera DK, Ortega L, Han S, Singh J, Ralhan SK, Wander GS, Mehra NK, Mulvihill JJ, Ferrell RE, Nath SK, Kamboh MI.

BMC Med Genet. 2008 Jul 3;9:59. doi: 10.1186/1471-2350-9-59.

18.

Assessing the clinical utility of a genetic risk score constructed using 49 susceptibility alleles for type 2 diabetes in a Japanese population.

Imamura M, Shigemizu D, Tsunoda T, Iwata M, Maegawa H, Watada H, Hirose H, Tanaka Y, Tobe K, Kaku K, Kashiwagi A, Kawamori R, Maeda S.

J Clin Endocrinol Metab. 2013 Oct;98(10):E1667-73. doi: 10.1210/jc.2013-1642. Epub 2013 Aug 16.

PMID:
23956346
19.

Joint effect of genetic and lifestyle risk factors on type 2 diabetes risk among Chinese men and women.

Villegas R, Delahanty R, Gao YT, Long J, Williams SM, Xiang YB, Cai H, Li HL, Hu F, Cai Q, Zheng W, Shu XO.

PLoS One. 2012;7(11):e49464. doi: 10.1371/journal.pone.0049464. Epub 2012 Nov 21.

20.

Evidence of a Causal Association Between Insulinemia and Endometrial Cancer: A Mendelian Randomization Analysis.

Nead KT, Sharp SJ, Thompson DJ, Painter JN, Savage DB, Semple RK, Barker A; Australian National Endometrial Cancer Study Group (ANECS), Perry JR, Attia J, Dunning AM, Easton DF, Holliday E, Lotta LA, O'Mara T, McEvoy M, Pharoah PD, Scott RJ, Spurdle AB, Langenberg C, Wareham NJ, Scott RA.

J Natl Cancer Inst. 2015 Jul 1;107(9). pii: djv178. doi: 10.1093/jnci/djv178. Print 2015 Sep.

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