Department of Epidemiology, School of Public Health and Management, Guangxi University of Chinese Medicine, 13 Wuhe Road, Nanning, Guangxi 530200, People's Republic of China.
Department of Environmental and Occupational Health, Guangxi Medical University, Nanning 530021, People's Republic of China.
Br J Nutr. 2024 Oct 28;132(8):979-987. doi: 10.1017/S0007114524001284.
This study aimed to understand the potassium voltage-gated channel KQT-like subfamily, member 1 gene polymorphism in a rural elderly population in a county in Guangxi and to explore the possible relationship between its gene polymorphism and blood sugar. The 6 SNP loci of blood DNA samples from 4355 individuals were typed using the imLDRTM Multiple SNP Typing Kit from Shanghai Tianhao Biotechnology Co. The data combining epidemiological information (baseline questionnaire and physical examination results) and genotyping results were statistically analyzed using GMDR0.9 software and SPSS22.0 software. A total of 4355 elderly people aged 60 years and above were surveyed in this survey, and the total abnormal rate of glucose metabolism was 16·11 % (699/4355). Among them, male:female ratio was 1:1·48; the age group of 60-69 years old accounted for the highest proportion, with 2337 people, accounting for 53·66 % (2337/4355). The results of multivariate analysis showed that usually not doing farm work (OR 1·26; 95 % CI 1·06, 1·50), TAG ≥ 1·70 mmol/l (OR 1·19; 95 % CI 1·11, 1·27), hyperuricaemia (OR 1·034; 95 % CI 1·01, 1·66) and BMI ≥ 24 kg/m (OR 1·06; 95 % CI 1·03, 1·09) may be risk factors for abnormal glucose metabolism. Among all participants, rs151290 locus AA genotype, A allele carriers (AA+AC) were 0.70 times more likely (0.54 to 0.91) and 0.82 times more likely (0.70 to 0.97) to develop abnormal glucose metabolism than CC genotype carriers, respectively. Carriers of the T allele at the rs2237892 locus (CT+TT) were 0.85 times more likely to have abnormal glucose metabolism than carriers of the CC genotype (0.72 to 0.99); rs2237897 locus CT gene. The possibility of abnormal glucose metabolism in the carriers of CC genotype, TT genotype and T allele (CT + TT) is 0·79 times (0·67-0·94), 0·74 times (0·55-0·99) and 0·78 times (0·66, 0·92). The results of multifactor dimensionality reduction showed that the optimal interaction model was a three-factor model consisting of farm work, TAG and rs2237897. The best model dendrogram found that the interaction between TAG and rs2237897 had the strongest effect on fasting blood glucose in the elderly in rural areas, and they were mutually antagonistic. Environment-gene interaction is an important factor affecting abnormal glucose metabolism in the elderly of a county in Hechi City, Guangxi.
本研究旨在了解广西某县农村老年人群中钾电压门控通道 KQT 样亚家族,成员 1 基因多态性,并探讨其基因多态性与血糖之间的可能关系。采用上海天昊生物技术有限公司的 imLDRTM 多重 SNP 分型试剂盒对 4355 名个体的血液 DNA 样本的 6 个 SNP 位点进行分型。使用 GMDR0.9 软件和 SPSS22.0 软件对结合流行病学信息(基线问卷和体检结果)和基因分型结果的数据进行统计分析。本调查共调查了 4355 名 60 岁及以上的老年人,葡萄糖代谢异常总检出率为 16.11%(699/4355)。其中,男女比例为 1:1.48;年龄在 60-69 岁的人群比例最高,有 2337 人,占 53.66%(2337/4355)。多因素分析结果显示,通常不从事农活(OR 1.26;95%CI 1.06,1.50)、TAG≥1.70mmol/l(OR 1.19;95%CI 1.11,1.27)、高尿酸血症(OR 1.034;95%CI 1.01,1.66)和 BMI≥24kg/m(OR 1.06;95%CI 1.03,1.09)可能是葡萄糖代谢异常的危险因素。在所有参与者中,rs151290 位点 AA 基因型、A 等位基因携带者(AA+AC)发生葡萄糖代谢异常的可能性分别是 CC 基因型携带者的 0.70 倍(0.54 至 0.91)和 0.82 倍(0.70 至 0.97);rs2237892 位点 T 等位基因携带者(CT+TT)发生葡萄糖代谢异常的可能性是 CC 基因型携带者的 0.85 倍(0.72 至 0.99);rs2237897 位点 CT 基因型携带者发生葡萄糖代谢异常的可能性是 CC 基因型、TT 基因型和 T 等位基因(CT+TT)携带者的 0.79 倍(0.67 至 0.94)、0.74 倍(0.55 至 0.99)和 0.78 倍(0.66,0.92)。多维尺度分析结果显示,最佳交互模型为一个三因素模型,包括务农、TAG 和 rs2237897。最佳模型树状图发现,TAG 和 rs2237897 之间的相互作用对农村老年人空腹血糖的影响最强,且两者相互拮抗。环境-基因相互作用是影响广西河池市某县农村老年人葡萄糖代谢异常的重要因素。