Susceptibility to lung cancer may in part be attributable to inter-individual variability in metabolic activation or detoxification of tobacco carcinogens. The glutathione S-transferase M1 (GSTM1) genetic polymorphism has been extensively studied in this context; two recent meta-analyses of case-control studies suggested an association between GSTM1 deletion and lung cancer. At least 15 studies have been published after these overviews. We undertook a new meta-analysis to summarize the results of 43 published case-control studies including >18 000 individuals. A slight excess of risk of lung cancer for individuals with the GSTM1 null genotype was found (odds ratio (OR) = 1.17, 95% confidence interval (CI) 1.07-1.27). No evidence of publication bias was found (P = 0.4), however, it is not easy to estimate the extent of such bias and we cannot rule out some degree of publication bias in our results. A pooled analysis of the original data of about 9500 subjects involved in 21 case-control studies from the International Collaborative Study on Genetic Susceptibility to Environmental Carcinogens (GSEC) data set was performed to assess the role of GSTM1 genotype as a modifier of the effect of smoking on lung cancer risk with adequate power. Analyses revealed no evidence of increased risk of lung cancer among carriers of the GSTM1 null genotype (age-, gender- and center-adjusted OR = 1.08, 95% CI 0.98-1.18) and no evidence of interaction between GSTM1 genotype and either smoking status or cumulative tobacco consumption.
Aging in humans is associated with marked declines in the disposition of numerous drugs and other xenobiotics that require hepatic biotransformation before elimination. Considerable pharmacokinetic evidence in humans, coupled with data on in vitro liver microsomal monooxygenase functions generated in inbred male rodent models, has implicated impaired liver phase I drug metabolism (i.e., diminished efficacy of microsomal monooxygenases) in reduced drug clearance in the elderly. This study (1) assessed the in vitro activities and amounts of liver microsomal monooxygenases as a function of donor age and gender in healthy humans and (2) provides the most extensive and comprehensive data to date demonstrating the absence of significant age- and gender-dependent differences in the activities and contents of human liver monooxygenases.
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