Skip to content
Open access

Investigation of the Causal Association Between Biological Aging Indicators and Vascular Disease Through Two-Sample Mendelian Randomization Analysis

Jan 2026 · Clinical and applied thrombosis/hemostasis · Vol 32 · 0 citations · 34 references
Medicine

TL;DR

This study identifies three genetic pathways linking biological aging to vascular disease, offering new molecular targets for its prevention and treatment.

Abstract

Objective This study used two-sample Mendelian Randomization to investigate the causal link between multiple biological aging indicators and vascular disease. Methods Summary genetic data was obtained from genome-wide association studies (GWAS) focusing on aging-related exposures and various vascular disease outcomes. The exposures included granulocyte proportions, PAI-1 (plasminogen activator inhibitor-1), telomere lengths, and the Frailty Index. The primary analysis employed the Inverse Variance Weighted (IVW) method to estimate causal relationships, supported by MR-Egger, weighted median, and weighted mode methods. Sensitivity analyses, including Cochran’s Q test, MR-Egger regression, leave-one-out test, and the MR Pleiotropy Residual Sum and Outlier (MR-PRESSO) test, were conducted to evaluate heterogeneity and pleiotropy. Results The analysis revealed distinct pathways after sensitivity adjustments. A higher genetically predicted Frailty Index was associated with an increased risk of abdominal aortic aneurysm (OR=2.5935, 95% CI: 1.3936–4.8268, P=0.0026, false discovery rate (FDR)=0.0475), atherosclerosis excluding cerebral and coronary sclerosis (OR=2.0262, 95% CI:1.5179–2.705, P=1.66×10-6, FDR=1×10-4), and arterial thromboembolic events (OR = 4.0306, 95% CI: 1.7133–9.4818, P = 0.0014, FDR = 0.0337). Conversely, longer telomere length demonstrated a strong, specific protective effect against abdominal aortic aneurysm (OR=0.5008, 95% CI:0.4111–0.6100, P=6.42×10-12, FDR=9.25×10-10), indicating that shorter telomere length is associated with an increased risk of AAA. Furthermore, a lower granulocyte proportion was causally linked to an increased risk of thoracic aortic aneurysm (OR=0.0181, 95% CI: 0.0014–0.2376, P=0.0023, FDR=0.0465). Conclusion This study identifies three genetic pathways linking biological aging to vascular disease, offering new molecular targets for its prevention and treatment.

Read PDF

Similar papers

Open access 2026

Comprehensive two-sample Mendelian randomization analysis of blood cell perturbation phenotypes and heart failure

Background: The causal relationships between blood cell perturbation phenotypes and heart failure (HF) remain unclear. This study aimed to investigate these potential associations using two-sample Mendelian randomization (MR). Methods: A two-sample MR analysis was performed using genome-wide association study summary s...

Huai-Zhi Qin, Lian-Tai Song, Meng-Xin Yang et al. · 0 citations
Open access Sep 2026

Limited evidence for causal effects of circulating inflammatory cytokines on the risk of selected hematologic malignancies: a two-sample Mendelian randomization study

Hematologic malignancies have been linked to inflammatory cytokine levels; however, whether a causal relationship exists between inflammatory cytokines and hematologic malignancies remains uncertain. This study aimed to explore the causal association between inflammatory cytokines and hematologic malignancies using Men...

Hui-Min Zhang, Li-Hong Zhang, Dan Zhao et al. · 0 citations
Open access Sep 2026

Mendelian randomization analysis reveals causal links between specific immune cell phenotypes and Parkinson's disease.

OBJECTIVE Immunity and neuroinflammation are key factors in Parkinson's Disease (PD); however, detailed studies on how they are causally related to each other are lacking. This study aimed to explore the potential causal relationship between immune cells and PD. METHODS A comprehensive two-sample Mendelian Randomizat...

Yan Su, Sheng Cai, Yang Xu et al. · 0 citations
Open access Oct 2026

Causal Associations Between Plasma Metabolites and Stroke Risk Identified by Mendelian Randomization.

Stroke is a leading cause of global mortality and morbidity, yet its underlying metabolic mechanisms remain largely undefined. Elucidating the causal role of blood metabolites in stroke pathogenesis is crucial for developing effective interventions. This study employed a two-sample Mendelian randomization (MR) framewor...

Luo Ding, Zhen-Yuan Li, Fu-Yuan Deng et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.