Abstract P2080: Interrelations between Atherogenic Index of Plasma, Subclinical Myocardial Injury, and Cardiovascular Mortality in the General Population

U Uttsav Sandesara (Wake Forest University, Winston Salem, North Carolina, United States) R Richard Kazibwe (WAKE FOREST SCHOOL OF MEDICINE, Winston Salem, North Carolina, United States) J Joseph Yeboah (WAKE FOREST UNIVERSITY, Winston Salem, North Carolina, United States) E Elsayed Soliman (Wake Forest School of Medicine, Winston-Salem, North Carolina, United States)

Abstract

Background: The Atherogenic Index of Plasma (AIP), a novel biomarker of lipid metabolism, is linked to adverse cardiovascular disease (CVD) outcomes. Subclinical myocardial injury (SCMI) may precede clinically evident CVD. We examined the association between AIP and SCMI, and their combined impact on CVD mortality in the general population. Methods: We analyzed 7,093 participants without CVD from the Third National Health and Nutrition Examination Survey. AIP was calculated as the logarithmic ratio of triglycerides to HDL cholesterol. Participants were stratified into low or high AIP groups based on the median AIP value (0.958). SCMI was defined by a Cardiac Infarction/Injury Score (CIIS) ≥10 from 12-lead electrocardiograms. Four groups were created based on AIP and SCMI status. CVD mortality data were obtained from the National Death Index. Multivariable logistic regression models assessed the cross-sectional association between AIP and SCMI, while Cox proportional hazards models examined the relationship between different AIP/SCMI groups and CVD mortality. Results: At baseline, 1,861 participants had SCMI, and 3,533 had high AIP. In the cross-sectional analysis, adjusted for socio-demographics and CVD risk factors, high AIP was significantly associated with increased odds of SCMI [OR (95% CI): 1.20 (1.07–1.35)]. Compared to participants with low AIP and absent SCMI, those with SCMI, irrespective of AIP level, had a significantly higher risk of CVD mortality in multivariable Cox proportional hazard models. However, high AIP without SCMI was not associated with CVD mortality (AIP/SCMI interaction p-value = 0.477) (Table) . Conclusions: In a CVD-free general population, high AIP was associated with an increased risk of SCMI. While SCMI was linked to a higher risk of CVD mortality regardless of AIP levels, high AIP was only associated with CVD mortality when SCMI was present. These findings suggest that the reported adverse outcomes linked to high AIP may be driven by the development of SCMI.

Article Details

Journal Circulation
Volume / Issue Vol. 151, Issue Suppl_1
Published March 11, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (4)

U

Uttsav Sandesara

Wake Forest University, Winston Salem, North Carolina, United States

R

Richard Kazibwe

WAKE FOREST SCHOOL OF MEDICINE, Winston Salem, North Carolina, United States

J

Joseph Yeboah

WAKE FOREST UNIVERSITY, Winston Salem, North Carolina, United States

E

Elsayed Soliman

Wake Forest School of Medicine, Winston-Salem, North Carolina, United States