孟德尔随机化
心脏磁共振成像
混淆
遗传关联
医学
全基因组关联研究
观察研究
磁共振成像
多效性
单核苷酸多态性
内科学
遗传学
生物
表型
遗传变异
基因型
放射科
基因
作者
Hui Zhang,Meng Hao,Zixin Hu,Yi Li,Xiaoxi Hu,Xiaoyan Jiang,Zuyun Liu,Xuehui Sun,Xiaofeng Wang
出处
期刊:Phenomics
[Springer Nature]
日期:2022-09-29
卷期号:2 (6): 430-437
被引量:5
标识
DOI:10.1007/s43657-022-00072-z
摘要
Owing to the susceptibility of conventional observational studies to confounding factors and reverse causation, the causal association between cardiac function and frailty is unclear. We aimed to investigate whether cardiac function has causal effects on frailty. In this study, a two-sample Mendelian randomization (MR) study was conducted using genetic variants associated with cardiac function assessed by magnetic resonance imaging phenotypes as instrumental variables. Genetic variants associated with cardiac function by magnetic resonance imaging (including seven cardiac function phenotypes) and the frailty index (FI) were obtained from two large genome-wide association studies. MR estimates from each genetic instrument were combined using inverse variance weighted (IVW), weighted median, and MR‒Egger regression methods. We found that the increase in genetically determined stroke volume (beta - 0.13, 95% CI - 0.16 to - 0.10, p = 1.39E-6), rather than other cardiac phenotypes, was associated with lower FI in MR analysis of IVW after Bonferroni correction. Sensitivity analyses examining potential bias caused by pleiotropy or reverse causality revealed similar findings (e.g., intercept [SE], - 0.008 [0.011], p = 0.47 by MR‒Egger intercept test). The leave-one-out analysis indicated that the association was not driven by single nucleotide polymorphisms. No evidence of heterogeneity was found among the genetic variants (e.g., MR‒Egger: Q statistic = 14.4, p = 0.156). In conclusion, we provided evidence that improved cardiac function could contribute to reducing FI. These findings support the hypothesis that enhancing cardiac function could be an effective prevention strategy for frailty.The online version contains supplementary material available at 10.1007/s43657-022-00072-z.
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