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December 10, 2024Bioscience Reports2 citationsOpen Access

Does COVID-19 impact the QT interval prolongation? Answers from genetic causal inference

YSYongfei SongZZZequn Zheng

Key Result

Genetically predicted COVID-19 does not causally prolong the QT interval (β -0.44; 95% CI -1.72 to 0.84; P=0.50).

Study Design

Type

Observational (n=84,630)

Structured PICO

Does COVID-19 causally prolong the QT interval in individuals of European ancestry?

P
Population
84,630 UK Biobank participants and over 1,000,000 individuals of European ancestry assessed for genetic causal associations between COVID-19 and QT intervals.
E
Exposure
Genetic proxies representing three COVID-19 phenotypes (severe, hospitalized, and COVID-19)
O
Outcome
QT interval alterationssurrogate

Mendelian randomization analysis suggests that COVID-19 does not directly causally prolong the QT interval, implying that previous observational findings may be due to residual confounding.

Main Result

Mean Difference: -0.44 (95% CI -1.72–0.84)

p-value: p=0.50

Abstract

During the COVID-19 pandemic, there has been heightened interest in the QT interval, a crucial indicator of ventricular electrical activity. Mendelian randomization (MR) is used here to investigate the genetic causation between QT interval alterations and COVID-19. Genetic proxies representing three COVID-19 phenotypes-severe, hospitalized, and COVID-19-were identified in over 1,000,000 individuals of European ancestry. Univariate two-sample MR (TSMR) and multi-exposure-adjusted multivariate MR (MVMR) were used to assess genetic causal associations between COVID-19 and QT intervals in 84,630 UK Biobank participants. The MR-robust adjusted profile score (MR-RAPS) method and radial MR frame were utilized for effective robustness and outlier variant detection, with sensitivity analyses conducted to identify horizontal pleiotropy. For every COVID-19 phenotype, univariate TSMR analysis revealed non-significant causal estimates between COVID-19 and the QT interval COVID-19: βIVW (95% CI): -0.44 (-1.72, 0.84), P = 0.50; hospitalization: βIVW: 0.12 (-0.57, 0.80), P = 0.74; severe case: βIVW: 0.11 (-0.29, 0.51), P = 0.58. MR-RAPS and outlier-corrected radial MR analyses further supported this null causal estimation. In confounder-adjusted MVMR analysis, this nonsignificant causality was independent of body mass index (BMI), smoking, and alcohol consumption βBMI+Alcohol+Smoking (95% CI): -0.77 (-2.44, 0.91), P = 0.37. Sensitivity analyses did not detect any evidence of bias from horizontal pleiotropy, abnormal data distribution, or weak instruments. These findings suggest that COVID-19 does not directly causally prolong the QT interval. Inconsistent findings in observational research may be attributed to residual confounding.

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Cite This Study

Song et al. (2024) conducted an observational in COVID-19 (n=84,630). COVID-19 vs. Unexposed (genetic proxies) was evaluated on QT interval prolongation (β -0.44, 95% CI -1.72 to 0.84, p=0.50). Genetically predicted COVID-19 does not causally prolong the QT interval (β -0.44; 95% CI -1.72 to 0.84; P=0.50).

synapsesocial.com/papers/6a831863ee90e576a3af8a28https://doi.org/10.1042/bsr20241281
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