Association between high oxidized high-density lipoprotein levels and increased pericoronary inflammation determined

Keishi Ichikawa1, Toru Miyoshi1, Kazuhiko Kotani2

  • 1Department of Cardiovascular Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama, Japan.

Journal of Cardiology
|July 19, 2022
PubMed

Insights

High levels of oxidized high-density lipoprotein (oxHDL) are linked to increased inflammation around the heart arteries. This finding may explain how impaired HDL function contributes to coronary atherosclerosis development.

Area of Science:

  • Cardiology
  • Biochemistry
  • Medical Imaging

Background:

  • Impaired high-density lipoprotein (HDL) function is a known risk factor for cardiac mortality.
  • Oxidized HDL (oxHDL) represents a dysfunctional form of HDL.
  • Pericoronary adipose tissue (PCAT) attenuation is a novel imaging biomarker indicating inflammation in the heart's arteries.

Purpose of the Study:

  • To investigate the association between oxidized HDL (oxHDL) levels and pericoronary adipose tissue (PCAT) attenuation.
  • To determine if oxHDL is linked to inflammation in the coronary arteries using coronary computed tomography angiography (CTA).

Main Methods:

  • A total of 287 outpatients with suspected coronary artery disease were analyzed.
  • Coronary CTA was used to measure PCAT attenuation in the right coronary artery.
  • Patients were stratified into three groups based on oxHDL levels: low, moderate, and high.

Main Results:

  • Higher PCAT attenuation was observed in the high oxHDL group compared to other groups.
  • Multivariate analysis confirmed a significant association between oxHDL levels and PCAT attenuation (β = 3.832, p < 0.001).
  • This association remained significant across various subgroups, including older patients, those with hypertension, dyslipidemia, diabetes mellitus, and significant coronary stenosis.

Conclusions:

  • Elevated oxHDL levels are significantly associated with increased pericoronary inflammation.
  • These findings suggest a potential mechanism linking impaired HDL function to the development of coronary atherosclerosis.
Abstract

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