CBS 2019
CBSMD教育中心
中 文

Other Relevant Articles

Abstract

Recommended Article

2-Year Outcomes After Stenting of Lipid-Rich and Nonrich Coronary Plaques Improving the Design of Future PCI Trials for Stable Coronary Artery Disease: JACC State-of-the-Art Review Optimal medical therapy improves clinical outcomes in patients undergoing revascularization with percutaneous coronary intervention or coronary artery bypass grafting: insights from the Synergy Between Percutaneous Coronary Intervention with TAXUS and Cardiac Surgery (SYNTAX) trial at the 5-year follow-up Systemic microvascular dysfunction in microvascular and vasospastic angina 2020 AHA/ACC Key Data Elements and Definitions for Coronary Revascularization A Report of the American College of Cardiology/American Heart Association Task Force on Clinical Data Standards (Writing Committee to Develop Clinical Data Standards for Coronary Revascularization) Know Diabetes by Heart: A Partnership to Improve Cardiovascular Outcomes in Type 2 Diabetes Mellitus Management of Percutaneous Coronary Intervention Complications: Algorithms From the 2018 and 2019 Seattle Percutaneous Coronary Intervention Complications Conference Long-Term Outcomes in Women and Men Following Percutaneous Coronary Intervention

Original Research2016 Dec;255:73-79.

JOURNAL:Atherosclerosis. Article Link

Plaque progression assessed by a novel semi-automated quantitative plaque software on coronary computed tomography angiography between diabetes and non-diabetes patients: A propensity-score matching study

Nakanishi R, Ceponiene I, Osawa K et al. Keywords: coronary computed tomography angiography; Diabetes; Plaque progression

ABSTRACT


BACKGROUND AND AIMS - We aimed at investigating whether diabetes is associated with progression in coronary plaque components.

 

METHODS - We identified 142 study subjects undergoing serial coronary computed tomography angiography. The resulting propensity score was applied 1:1 to match diabetic patients to non-diabetic patients for clinical risk factors, prior coronary stenting, coronary arterycalcium (CAC) score and the serial scan interval, resulting in the 71 diabetes and 71 non-diabetes patients. Coronary plaque (total, calcified, non-calcified including fibrous, fibrous-fatty and low attenuation plaque [LAP]) volume normalized by total coronary arterylength was measured using semi-automated plaque software and its change overtime between diabetic and non-diabetic patients was evaluated.

 

RESULTS - The matching was successful without significant differences between the two groups in all matched variables. The baseline volumes in each plaque also did not differ. During a mean scan interval of 3.4 ± 1.8 years, diabetic patients showed a 2-fold greater progression in normalized total plaque volume (TPV) than non-diabetes patients (52.8 mm3vs. 118.3 mm3, p = 0.005). Multivariable linear regression model revealed that diabetes was associated with normalized TPV progression (β 72.3, 95%CI 24.3-120.3). A similar trend was observed for the non-calcified components, but not calcified plaque (β 3.8, 95%CI -27.0-34.7). Higher baseline CAC score was found to be associated with total, non-calcified and calcified plaque progression. However, baseline non-calcified volume but not CAC score was associated with LAP progression.

 

CONCLUSIONS - The current study among matched patients indicates diabetes is associated with a greater plaque progression. Our results show the need for strict adherence of diabetic patients to the current preventive guidelines.

 

Copyright © 2016 Elsevier Ireland Ltd. All rights reserved.