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Glutathione transferase M1 and P1 and their significance for lung DNA adduct levels and cancer risk. Carcinogenesis 18: 12859. 29. Harries LW, Stubbins MJ, Forman D, Howard GCW, Wolf CR Identification of genetic polymorphisms in the glutathione Stransferase Pi locus and association with susceptibility to Epigenetics bladder, testicular and prostate cancer. Carcinogenesis 18: 641644. 30. Ishii T, Matsuse T, Teramoto S, Matsui H, Miyao M, et al. Glutathione S-transferase P1 polymorphism in sufferers with chronic obstructive pulmonary disease. Thorax 54: 6936. 31. He JQ, Ruan J, Connett JE, Anthonisen NR, Pare PD, et al. Antioxidant gene polymorphisms and susceptibility to a fast decline in lung function in smokers. Am J Respir Crit Care Med 166: 3238. 32. Vibhuti A, Arif E, Deepak D, Singh B, Qadar Pasha MA Genetic polymorphisms of GSTP1 and mEPHX correlate with oxidative stress markers and lung function in COPD. Biochem Biophys Res Commun 359: 13642. 33. He JQ, Connett JE, Anthonisen NR, Pare PD, 17493865 Sandford AJ. Glutathione S-transferase variants and their interaction with smoking on lung function. Am J Respir Crit Care Med 170: 38894. 34. Young RP, Hopkins RJ, Hay BA, Whittington CF, Epton MJ, et al. FAM13A locus in COPD is independently connected with lung cancer proof of a molecular genetic hyperlink among COPD and lung cancer. Appl Clin Genet four: 110. 35. Cho MH, Boutaoui N, Klanderman BJ, Sylvia JS, Ziniti JP, et al. Variants in FAM13A are associated with chronic obstructive pulmonary illness. Nat Genet 42: 200202. 36. Demeo DL, Mariani TJ, Lange C, Srisuma S, Litonjua AA, et al. The SERPINE2 gene is connected with chronic obstructive pulmonary disease. Am J Hum Genet 78: 25364. 37. Zhu G, Warren L, Aponte J, Gulsvik A, Bakke P, et al. The SERPINE2 gene is associated with chronic obstructive pulmonary illness in two large populations. Am J Respir Crit Care Med 176: 16773. 38. Fujimoto K, Ikeda S, Arai T, Tanaka N, Kumasaka T, et al. Polymorphism of SERPINE2 gene is related with pulmonary emphysema in consecutive autopsy circumstances. BMC Med Genet 11: 159. 39. DeMeo DL, Mariani T, Bhattacharya S, Srisuma S, Lange C, et al. Integration of genomic and genetic approaches implicates IREB2 as a COPD susceptibility gene.Am J Hum Genet 85: 493502. 40. Chappell SL, Daly L, Lotya J, Alsaegh A, Guetta-Baranes T, et al. The role of IREB2 and transforming development aspect beta-1 genetic variants in COPD: a replication case-control study. BMC Med Genet 12: 24. 41. Kim WJ, Wood AM, Barker AF, Brantly ML, Campbell EJ, et al. Association of IREB2 and CHRNA3 polymorphisms with airflow obstruction in serious alpha-1 antitrypsin deficiency. Respir Res13: 16. 42. Kumar R, Prakash S, Kushwah AS, Vijayan VK Breath carbon monoxide concentration in cigarette and bidi smokers in India. Indian J Chest Dis Allied Sci 52: 1924. six ~~ ~~ Higher antibiotic consumption is stated to become linked together with the emergence and dissemination of multi-resistant bacteria in the neighborhood. Demands and expectations for antibiotics in common upper respiratory tract infections ) are essential drivers of antibiotic overprescribing in primary care. Several countries have initiated applications targeted at physicians and the general public to minimize antibiotic prescribing. Most evaluated applications have recorded some good results even though the effect on resistance to antimicrobial drugs, and specifically on dissemination of antibiotic-resistant pneumococci, remains uncertain. Substantial heterogeneity in antibiotic pre.

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Author: heme -oxygenase