Abstract

We conducted this meta-analysis of relevant case–control studies to investigate the relationships between genetic polymorphisms in VDR, ESR1 and ESR2 genes to the susceptibility of Parkinson’s disease (PD). A search on electronic databases without any language restrictions was conducted: MEDLINE (1966–2013), the Cochrane Library Database (Issue 12, 2013), EMBASE (1980–2013), CINAHL (1982–2013), Web of Science (1945–2013) and the Chinese Biomedical Database (1982–2013). Meta-analysis was performed using the STATA statistical software. Crude odds ratio (OR) with their 95 % confidence interval (95 % CI) was calculated. Fourteen case–control studies with a total of 3,689 PD patients and 4,627 healthy subjects were included in our meta-analysis. The results of our meta-analysis demonstrated that the VDR genetic polymorphisms might be closely related to increased risks of PD (allele model: OR = 1.18, 95 % CI 1.09–1.29, P < 0.001; dominant model: OR = 1.37, 95 % CI 1.16–1.63, P < 0.001; respectively), especially for the polymorphisms rs7976091 and rs10735810. Our findings also illustrated that ESR1 genetic polymorphisms might increase the risk of PD (allele model: OR = 1.56, 95 % CI 1.17–2.07, P = 0.002; recessive model: OR = 1.93, 95 % CI 1.33–2.80, P < 0.001; homozygous model: OR = 1.35, 95 % CI 1.02–1.79, P = 0.038; heterozygous model: OR = 2.04, 95 % CI 1.36–3.07, P = 0.001; respectively), especially for the polymorphisms rs2234693 and rs9340799. Furthermore, we found significant correlations of ESR2 genetic polymorphisms with the risk of PD (allele model: OR = 1.78, 95 % CI 1.19–2.67, P = 0.005; recessive model: OR = 1.93, 95 % CI 1.15–3.27, P = 0.014; homozygous model: OR = 1.77, 95 % CI 1.09–2.89, P = 0.022; heterozygous model: OR = 1.88, 95 % CI 1.08–3.27, P = 0.025; respectively), especially for the rs1256049 polymorphism. Our meta-analysis suggests that genetic polymorphisms in VDR, ESR1 and ESR2 genes may contribute to increased risks for PD.

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