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May 8, 2026Aging Cell0 citationsOpen Access

Estimating Vascular Age to Evaluate the Association Between Aging and Cardiovascular Disease

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YLYueqi LuYZYucong ZhangBCBangwei Chen

Key Result

Higher vascular aging velocity, indicated by lower normalized cardiovascular age acceleration, was associated with an increased risk of cardiovascular disease in males (HR 1.21; 95% CI 1.01-1.45).

Key Points

  • This study aims to evaluate the relationship between vascular aging and cardiovascular disease risk by developing a quantitative vascular age model.
  • Analyzed physical examination records of 8578 participants aged 20-70 from 2009 to 2019.
  • Constructed sex-specific basic vascular age models using the Klemera-Doubal method and calculated normalized cardiovascular age acceleration (NCAA).
  • Evaluated the association between NCAA and CVD risk across different subgroups, incorporating traditional CVD risk factors.
  • Lower normalized cardiovascular age acceleration (η) in males linked to higher CVD risk (HR = 1.21, 95% CI = 1.01-1.45).
  • Incorporating body mass index, fasting blood glucose, and triglycerides improved CVD prediction (HR = 1.25, 95% CI = 1.04-1.50).
  • The vascular age model serves as a reliable biomarker for efficient CVD risk stratification.

Study Design

Type

Cohort (n=8,578)

Structured PICO

Does normalized cardiovascular age acceleration (NCAA, η) predict cardiovascular disease risk in adults aged 20-70 years?

P
Population
8,578 participants aged 20-70 years with physical examination records from 2009 to 2019.
I
Intervention
Calculation of normalized cardiovascular age acceleration (NCAA, η) as an estimate of vascular aging status using the Klemera-Doubal method, and an expanded model incorporating body mass index, fasting blood glucose, and triglycerides.
C
Comparator
Chronological age and different levels of normalized cardiovascular age acceleration (NCAA, η).
O
Outcome
Cardiovascular disease (CVD) risk.hard clinical

A quantitative vascular age model measuring cardiovascular age acceleration independently predicts cardiovascular disease risk, particularly in males, offering a potential tool for early risk stratification and targeted prevention.

Main Result

Effect estimate: HR 1.21 (95% CI 1.01-1.45)

Abstract

Vascular aging, characterized by progressive structural and functional deterioration of the vasculature, serves as a critical pathophysiological nexus between chronological aging and cardiovascular disease (CVD). This study establishes a quantitative vascular age model to decode individualized vascular senescence patterns, thereby enabling early identification of accelerated aging phenotypes for targeted intervention. We collected physical examination records from 2009 to 2019 and a total of 8578 participants aged 20-70 years were enrolled in this study. We constructed sex-specific basic vascular age models based on healthy individuals by Klemera-Doubal method and calculated the normalized cardiovascular age acceleration (NCAA, η) as an estimate of vascular aging status. The association between η and CVD risk were evaluated across subgroups. Furthermore, we developed expanded models by incorporating traditional CVD risk factors that were significantly associated with η index. Male with lower values of η, which meant relatively higher vascular aging velocity, had a higher risk of CVD adjusted by chronological age (HR = 1.21, 95% CI = 1.01-1.45). In subgroup analysis, η index exhibited age- and sex-specific associations with traditional CVD risk factors. After adding body mass index, fasting blood glucose, and triglycerides significantly related to η in male, the CVD prediction by expand η were improved in age-adjusted model (HR = 1.25, 95% CI = 1.04-1.50). The vascular age model emerges as a robust composite biomarker for CVD risk stratification. Our findings establish an evidence-based framework for precision prevention, prioritizing high-risk phenotypes for early intervention to mitigate CVD burden.

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Cite This Study

Lu et al. (2026) conducted a cohort in Cardiovascular disease (n=8,578). Normalized cardiovascular age acceleration (NCAA, η) was evaluated on Cardiovascular disease risk (HR 1.21, 95% CI 1.01-1.45). Higher vascular aging velocity, indicated by lower normalized cardiovascular age acceleration, was associated with an increased risk of cardiovascular disease in males (HR 1.21; 95% CI 1.01-1.45).

synapsesocial.com/papers/69fd7e90bfa21ec5bbf06c21https://doi.org/10.1111/acel.70503
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