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2. Effect of NAT1 and NAT2 genetic polymorphisms on colorectal cancer risk associated with exposure to tobacco smoke and meat consumption. Lilla C; Verla-Tebit E; Risch A; Jäger B; Hoffmeister M; Brenner H; Chang-Claude J Cancer Epidemiol Biomarkers Prev; 2006 Jan; 15(1):99-107. PubMed ID: 16434594 [TBL] [Abstract][Full Text] [Related]
3. N-Acetyltransferase-2 genetic polymorphism, well-done meat intake, and breast cancer risk among postmenopausal women. Deitz AC; Zheng W; Leff MA; Gross M; Wen WQ; Doll MA; Xiao GH; Folsom AR; Hein DW Cancer Epidemiol Biomarkers Prev; 2000 Sep; 9(9):905-10. PubMed ID: 11008907 [TBL] [Abstract][Full Text] [Related]
4. Sulfotransferase 1A1 polymorphism, endogenous estrogen exposure, well-done meat intake, and breast cancer risk. Zheng W; Xie D; Cerhan JR; Sellers TA; Wen W; Folsom AR Cancer Epidemiol Biomarkers Prev; 2001 Feb; 10(2):89-94. PubMed ID: 11219777 [TBL] [Abstract][Full Text] [Related]
5. Arylamine N-acetyltransferase 1 (NAT1) and 2 (NAT2) polymorphisms in susceptibility to bladder cancer: the influence of smoking. Okkels H; Sigsgaard T; Wolf H; Autrup H Cancer Epidemiol Biomarkers Prev; 1997 Apr; 6(4):225-31. PubMed ID: 9107426 [TBL] [Abstract][Full Text] [Related]
6. Polymorphisms of cytochrome P4501A2 and N-acetyltransferase genes, smoking, and risk of pancreatic cancer. Li D; Jiao L; Li Y; Doll MA; Hein DW; Bondy ML; Evans DB; Wolff RA; Lenzi R; Pisters PW; Abbruzzese JL; Hassan MM Carcinogenesis; 2006 Jan; 27(1):103-11. PubMed ID: 15987714 [TBL] [Abstract][Full Text] [Related]
7. Genetic polymorphisms in heterocyclic amine metabolism and risk of colorectal adenomas. Ishibe N; Sinha R; Hein DW; Kulldorff M; Strickland P; Fretland AJ; Chow WH; Kadlubar FF; Lang NP; Rothman N Pharmacogenetics; 2002 Mar; 12(2):145-50. PubMed ID: 11875368 [TBL] [Abstract][Full Text] [Related]
8. A prospective study of N-acetyltransferase genotype, red meat intake, and risk of colorectal cancer. Chen J; Stampfer MJ; Hough HL; Garcia-Closas M; Willett WC; Hennekens CH; Kelsey KT; Hunter DJ Cancer Res; 1998 Aug; 58(15):3307-11. PubMed ID: 9699660 [TBL] [Abstract][Full Text] [Related]
9. Polyadenylation polymorphism in the acetyltransferase 1 gene (NAT1) increases risk of colorectal cancer. Bell DA; Stephens EA; Castranio T; Umbach DM; Watson M; Deakin M; Elder J; Hendrickse C; Duncan H; Strange RC Cancer Res; 1995 Aug; 55(16):3537-42. PubMed ID: 7627961 [TBL] [Abstract][Full Text] [Related]
10. Meat consumption, N-acetyl transferase 1 and 2 polymorphism and risk of breast cancer in Danish postmenopausal women. Egeberg R; Olsen A; Autrup H; Christensen J; Stripp C; Tetens I; Overvad K; Tjønneland A Eur J Cancer Prev; 2008 Feb; 17(1):39-47. PubMed ID: 18090909 [TBL] [Abstract][Full Text] [Related]
11. A pilot study testing the association between N-acetyltransferases 1 and 2 and risk of oral squamous cell carcinoma in Japanese people. Katoh T; Kaneko S; Boissy R; Watson M; Ikemura K; Bell DA Carcinogenesis; 1998 Oct; 19(10):1803-7. PubMed ID: 9806162 [TBL] [Abstract][Full Text] [Related]
12. NAT1*10 and NAT1*11 polymorphisms and breast cancer risk. Millikan RC Cancer Epidemiol Biomarkers Prev; 2000 Feb; 9(2):217-9. PubMed ID: 10698485 [TBL] [Abstract][Full Text] [Related]
13. Cigarette smoking, N-acetyltransferases 1 and 2, and breast cancer risk. Millikan RC; Pittman GS; Newman B; Tse CK; Selmin O; Rockhill B; Savitz D; Moorman PG; Bell DA Cancer Epidemiol Biomarkers Prev; 1998 May; 7(5):371-8. PubMed ID: 9610785 [TBL] [Abstract][Full Text] [Related]
14. Polymorphism in the N-acetyltransferase 1 alleles NAT1*10 and NAT1*14A and cytological gradings of exfoliated urothelial cells in benzidine-exposed Chinese workers: discussion of ethnic differences. Guo WC; Lin GF; Chen JG; Golka K; Shen JH Arch Toxicol; 2004 Aug; 78(8):425-9. PubMed ID: 15197537 [TBL] [Abstract][Full Text] [Related]
15. GSTM1 and GSTT1 polymorphisms and postmenopausal breast cancer risk. Zheng W; Wen WQ; Gustafson DR; Gross M; Cerhan JR; Folsom AR Breast Cancer Res Treat; 2002 Jul; 74(1):9-16. PubMed ID: 12150456 [TBL] [Abstract][Full Text] [Related]
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17. Combined effects of well-done red meat, smoking, and rapid N-acetyltransferase 2 and CYP1A2 phenotypes in increasing colorectal cancer risk. Le Marchand L; Hankin JH; Wilkens LR; Pierce LM; Franke A; Kolonel LN; Seifried A; Custer LJ; Chang W; Lum-Jones A; Donlon T Cancer Epidemiol Biomarkers Prev; 2001 Dec; 10(12):1259-66. PubMed ID: 11751443 [TBL] [Abstract][Full Text] [Related]
18. Cumulative genetic defects in carcinogen metabolism may increase breast cancer risk (The Netherlands). van der Hel OL; Bueno-de-Mesquita HB; van Gils CH; Roest M; Slothouber B; Grobbee DE; Peeters PH Cancer Causes Control; 2005 Aug; 16(6):675-81. PubMed ID: 16049806 [TBL] [Abstract][Full Text] [Related]
19. Meat and heterocyclic amine intake, smoking, NAT1 and NAT2 polymorphisms, and colorectal cancer risk in the multiethnic cohort study. Nöthlings U; Yamamoto JF; Wilkens LR; Murphy SP; Park SY; Henderson BE; Kolonel LN; Le Marchand L Cancer Epidemiol Biomarkers Prev; 2009 Jul; 18(7):2098-106. PubMed ID: 19549810 [TBL] [Abstract][Full Text] [Related]
20. Modification by N-acetyltransferase 1 genotype on the association between dietary heterocyclic amines and colon cancer in a multiethnic study. Butler LM; Millikan RC; Sinha R; Keku TO; Winkel S; Harlan B; Eaton A; Gammon MD; Sandler RS Mutat Res; 2008 Feb; 638(1-2):162-74. PubMed ID: 18022202 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]