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Published on: June 2, 2022
Vascular Calcification as a Novel Risk Factor for Kidney Function Deterioration in the Nonelderly
Samel Park1, Nam-Jun Cho1, Nam Hun Heo2
1Department of Internal Medicine Soonchunhyang University Cheonan Hospital Cheonan Korea.
Insights
Vascular calcification, measured by coronary artery calcium score (CACS), is linked to faster kidney function decline in individuals with normal kidney function. Higher CACS indicates a greater risk of chronic kidney disease progression.
Area of Science:
- Nephrology
- Cardiology
- Radiology
Background:
- Vascular calcification is associated with chronic kidney disease.
- The impact of vascular calcification on renal function deterioration is not fully understood.
Purpose of the Study:
- To investigate if higher vascular calcification, indicated by coronary artery calcium score (CACS), is associated with more rapid kidney function decline.
Main Methods:
- Retrospective review of 739 individuals with normal estimated glomerular filtration rate (eGFR) undergoing cardiac computed tomography.
- Participants were categorized by CACS (0, 1-99, ≥100) and followed for approximately 7.8 years.
- Linear mixed models and propensity score matching were used to analyze eGFR decline and renal outcomes.
Main Results:
- Individuals with CACS ≥100 showed a significantly faster annual decline in eGFR compared to those with CACS 0.
- The CACS ≥100 group had a 2.52-fold increased hazard for meeting Kidney Disease: Improving Global Outcomes criteria.
- Renal outcomes were more prevalent in the high CACS group (13.2%) versus the no calcification group (1.9%) after propensity score matching.
Conclusions:
- Higher coronary artery calcium scores are associated with accelerated kidney function decline.
- Vascular calcification may play a role in the progression of chronic kidney disease.
- These findings suggest CACS could be a marker for assessing kidney disease progression risk.
Abstract:
Background The relationship between vascular calcification and chronic kidney disease is well known. However, whether vascular calcification affects renal function deterioration remains unclear. We investigated whether kidney function deteriorated more rapidly in individuals with higher vascular calcification indicated by the coronary artery calcium score (CACS). Methods and Results Individuals with a normal estimated glomerular filtration rate (>60 mL/min per 1.73 m2) who underwent cardiac computed tomography in our institution (a tertiary teaching hospital in Cheonan, Korea) from January 2010 to July 2012 were retrospectively reviewed. All participants were aged 20 to 65 years. Among 739 patients, 447, 175, and 117 had CACSs of 0, 1 to 99, and ≥100 units, respectively. The participants were followed for 7.8 (interquartile range, 5.5-8.8) years. The adjusted annual estimated glomerular filtration rates declined more rapidly in patients in the CACS ≥100 group compared with those in the CACS 0 group (adjusted-β, -0.40; 95% CI, -0.80 to -0.03) when estimated using a linear mixed model. The adjusted hazard ratio in the CACS ≥100 group for Kidney Disease: Improving Global Outcomes criteria (a drop in estimated glomerular filtration rate category accompanied by a 25% or greater drop in estimated glomerular filtration rate) was 2.52 (1.13-5.61). After propensity score matching, more prevalent renal outcomes (13.2%) were observed in patients with a CACS of ≥100 compared with those with a CACS of 0 (1.9%), with statistical significance (P=0.004). Conclusions Our results showed that renal function declined more rapidly in patients with higher CACSs, suggesting that vascular calcification might be associated with chronic kidney disease progression.
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