Development and Validation of the American Heart Association's PREVENT Equations

Sadiya S Khan1, Kunihiro Matsushita2, Yingying Sang2,3

  • 1Department of Medicine, Northwestern University Feinberg School of Medicine, Chicago, IL (S.S.K.).

Circulation
|November 10, 2023
PubMed

Insights

The new American Heart Association PREVENT equations accurately predict cardiovascular disease (CVD) risk in US adults using common clinical factors. These validated equations improve risk assessment for primary prevention of CVD events.

Area of Science:

  • Cardiovascular Disease Epidemiology
  • Risk Prediction Modeling
  • Preventive Cardiology

Background:

  • Current multivariable equations for cardiovascular disease (CVD) risk assessment have limitations.
  • Primary prevention guidelines recommend risk assessment equations for CVD.
  • New equations were needed to address limitations in existing CVD risk prediction.

Purpose of the Study:

  • To develop and validate the American Heart Association Predicting Risk of CVD EVENTs (PREVENT) equations.
  • To assess CVD risk in US adults aged 30-79 without known CVD.
  • To create sex-specific equations using traditional risk factors and estimated glomerular filtration rate.

Main Methods:

  • Utilized individual-level data from 25 datasets (N=3,281,919) between 1992-2017 for derivation.
  • Included traditional CVD risk factors (smoking, blood pressure, cholesterol, medication use, diabetes) and eGFR.
  • Performed meta-analysis of sex-specific, race-free models adjusted for competing risks; validated externally in 3,330,085 participants.

Main Results:

  • Included 6,612,004 adults; median follow-up 4.8 years; 211,515 incident CVD events.
  • External validation showed good discrimination (median C-statistic: 0.794 female, 0.757 male) and calibration (slopes: 1.03 female, 0.94 male).
  • Adding optional predictors (urine albumin-to-creatinine ratio, HbA1c, social deprivation index) showed small but significant improvements in discrimination.

Conclusions:

  • The PREVENT equations accurately and precisely predict incident CVD and CVD subtypes in a large, diverse US adult population.
  • The equations effectively utilize routinely available clinical variables for risk prediction.
  • These validated equations offer an improved tool for primary prevention of cardiovascular disease.
Abstract

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