Association between glutathione S-transferase gene M1 and T1 polymorphisms and chronic obstructive pulmonary disease risk: A meta-analysis
CLINICAL GENETICS
Authors: Ding, Z.; Wang, K.; Li, J.; Tan, Q.; Tan, W.; Guo, G.
Abstract
Chronic obstructive pulmonary disease (COPD) is a severe lung disease characterized by long-term breathing problems. A series of studies have indicated that the glutathione S-transferase genes M1 and T1 are associated with COPD susceptibility; however, the result still remains inconclusive. This meta-analysis was performed to estimate the effect of GSTM1 and GSTT1 polymorphisms in COPD risk. Eligible case-control studies published between January 2000 and December 2017 was searched and retrieved. A total of 37 articles were screened out, including 4674 COPD patients and 5006 controls. Overall, our results found that GSTM1 and GSTT1 null genotypes significantly increased the risk of COPD (GSTM1: odds ratio [OR] = 1.52, 95% confidence interval [CI] = 1.31-1.77, P <.00001; GSTT1: OR = 1.28, 95% CI = 1.09-1.50, P = .003). Subgroup analysis by ethnicity suggested that there was a close association between GSTM1 null polymorphism and COPD susceptibility in each studied ethnicity, while GSTT1 null polymorphism only showed association with Asian COPD patients. Moreover, we also found that joint GSTM1/GSTT1 null genotypes showed a high association with increased COPD susceptibility (OR = 1.42, 95% CI = 1.21-1.66, P < .0001). In conclusion, our results indicated that GSTM1 null, GSTT1 null, and the combined GSTM1/GSTT1 null genotypes might be risk factors in the development of COPD. However, future case-control studies with large-scale participants are still required to further estimate these associations.
The Effect of Nitric Oxide Pollution on Oxidative Stress in Pregnant Women Living in Durban, South Africa
ARCHIVES OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY
Authors: Anderson, Samantha M.; Naidoo, Rajen N.; Ramkaran, Prithiksha; Phulukdaree, Alisa; Muttoo, Sheena; Asharam, Kareshma; Chuturgoon, Anil A.
Abstract
The purpose of the study was to evaluate the effect nitric oxide (NO (x) ) pollution had on maternal serum 8-oxo-7,8-dihydro-2'-deoxyguanosine (8-OHdG) levels and neonatal outcomes in pregnant women living in Durban, South Africa (SA). Women, in their third trimester with singleton pregnancies, were recruited from the heavily industrialised south (n = 225) and less industrialised north (n = 152). Biomarker levels of serum 8-OHdG concentrations were analysed, and the women were genotyped for glutathione-S-transferases pi 1 (GSTP1) and glutathione-S-transferases mu 1 (GSTM1) polymorphisms. The level of NO (x) pollution in the two regions was determined by using land use regression modelling. The serum 8-OHdG was shown to correlate significantly with NO (x) levels; this relationship was strengthened in the south (p < 0.05). This relationship was still observed after adjusting for maternal characteristics. GSTP1 was significantly associated with the south region, where the variant (AG+GG) genotype was associated with increased 8-OHdG levels as a result of NO (x) exposure (p < 0.05). GSTM1 null genotype was associated with a positive correlation between NO (x) and 8-OHdG levels (p < 0.05). NO (x) levels were found marginally to reduce gestational age (p < 0.05) with mothers carrying male neonates. Variant GSTP1 and living in the north were factors that contributed to gestational age reduction (p < 0.05). Our study demonstrated that NO (x) exposure resulted in increased 8-OHdG levels in pregnant women living in Durban, SA, which led to gestational age reduction. The GSTP1 variant increased susceptibility of individuals to harmful effects of NO (x) .