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Published on: August 28, 2018
Association between renal dysfunction and the mixed plaque of coronary artery on computed tomographic angiography
Jiyoon Sung1, Jae Hyun Chang, Wook-Jin Chung
1Department of Internal Medicine, Gachon University School of Medicine, Incheon, Korea.
Insights
Renal dysfunction (RD) is linked to mixed plaque (MP) in coronary arteries, not calcified or noncalcified plaque. This finding suggests a potential role for RD in coronary artery disease development.
Area of Science:
- Cardiology
- Nephrology
- Radiology
Background:
- Coronary artery plaque is a key factor in coronary artery disease (CAD).
- Chronic kidney disease is known to be associated with CAD.
- The specific relationship between renal dysfunction (RD) and coronary artery plaque characteristics remains unclear.
Purpose of the Study:
- To investigate the association between renal dysfunction (RD) and coronary artery plaque characteristics.
- To determine if RD influences the type or presence of coronary artery plaque.
Main Methods:
- Utilized multislice computed tomographic angiography (CTA) in 918 patients with suspected CAD.
- Classified patients into four groups: no plaque (NP), calcified plaque (CP), noncalcified plaque (NCP), and mixed plaque (MP).
- Assessed renal function using estimated glomerular filtration rate (eGFR), defining RD as eGFR < 60 mL/min/1.73 m(2).
Main Results:
- Prevalence of RD was significantly higher in patients with MP (14.5%) compared to NP (3.3%), CP (10.2%), and NCP (5.3%).
- RD showed an adjusted odds ratio of 3.38 for MP compared to NP.
- RD was independently associated with MP counts but not with CP or NCP.
Conclusions:
- Renal dysfunction is specifically associated with the presence of mixed plaque in coronary arteries.
- This association suggests that RD may play a role in the development of coronary artery disease, particularly concerning plaque composition.
Abstract:
Coronary artery plaque is related to development of coronary artery disease (CAD), and chronic kidney disease is associated with CAD. However, the association of renal dysfunction (RD) with coronary artery plaque characteristics has not been fully elucidated. We evaluated the association between RD and coronary artery plaque characteristics in patients with suspected CAD, who underwent multislice computed tomographic angiography (CTA). A total of 918 patients were classified into 4 groups: group with no plaque (NP) (48.9%), group with calcified plaque (CP) (16.0%), group with noncalcified plaque (NCP) (22.4%), and group with mixed plaque (MP) (12.7%). NCP is considered as rupture-prone soft plaque, and CP as more stable lesion. The mean of estimated glomerular filtration rate (eGFR) was 82.5 ± 15.4 mL/min/1.73 m(2), and the prevalence of RD (defined as eGFR < 60 mL/min/1.73 m(2)) was 6.3%. The prevalence of RD was 3.3% in the NP group, 10.2% in the CP group, 5.3% in the NCP group, and 14.5% in the MP group (P < 0.001 by ANOVA tests). The adjusted odds ratio for RD was 3.38 (95% confidence interval, 1.27-9.04) for the MP group, compared with the NP group. The presence of RD showed an independent association with the MP counts (r = 0.155, P < 0.001); however, there was no association between RD and other plaque characteristics. In conclusion, RD is associated with MP rather than CP or NCP, compared with NP, which may reflect one of the developmental processes of CAD in patients with RD.
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