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Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Left ventricular mass regression, all-cause and cardiovascular mortality in chronic kidney disease: a meta-analysis
Kevin C Maki1,2, Meredith L Wilcox3, Mary R Dicklin3
1Department of Applied Health Science, Indiana University School of Public Health, 1025 E 7th St #111, Bloomington, IN, 47405, USA. kcmaki@iu.edu.
Insights
Reducing left ventricular mass (LVM) in chronic kidney disease (CKD) patients over 12 months or longer significantly lowers all-cause mortality risk. This finding suggests LVM regression is a valuable indicator for interventions aimed at improving survival in CKD.
Area of Science:
- Nephrology
- Cardiology
- Clinical Trials
Background:
- Cardiovascular disease (CVD) significantly contributes to mortality in chronic kidney disease (CKD) patients.
- Elevated left ventricular mass (LVM) is a known predictor of adverse cardiovascular outcomes and mortality.
- Previous reviews indicated no clear link between intervention-induced LVM changes and mortality in CKD.
Purpose of the Study:
- To determine if treatment-induced reductions in LVM over ≥12 months are associated with all-cause mortality in CKD patients.
- To investigate cardiovascular mortality as a secondary outcome.
Main Methods:
- A meta-analysis of 42 trials with durations of ≥12 months.
- Included interventions such as erythropoietin stimulating agents, renin-angiotensin-aldosterone system inhibitors, modified hemodialysis, and others.
- Extracted and pooled relative risks (RRs) with 95% confidence intervals (CIs) for mortality outcomes.
Main Results:
- A pooled RR of 0.72 (95% CI 0.57 to 0.90) for all-cause mortality was observed in 27 trials ≥12 months.
- Similar risk reductions were found in sensitivity analyses using shorter durations (≥6, ≥9 months) and longer durations (>12 months).
- The point estimate for cardiovascular mortality (RR 0.67, 95% CI 0.39 to 1.16) was similar but not statistically significant.
Conclusions:
- Treatment-induced LVM regression over ≥12 months is associated with a significant reduction in all-cause mortality in CKD patients.
- LVM regression may serve as a useful surrogate marker for the mortality benefits of interventions in CKD.
- Further research may clarify the association with cardiovascular mortality.
Background:
Cardiovascular disease is an important driver of the increased mortality associated with chronic kidney disease (CKD). Higher left ventricular mass (LVM) predicts increased risk of adverse cardiovascular outcomes and total mortality, but previous reviews have shown no clear association between intervention-induced LVM change and all-cause or cardiovascular mortality in CKD.
Methods:
The primary objective of this meta-analysis was to investigate whether treatment-induced reductions in LVM over periods ≥12 months were associated with all-cause mortality in patients with CKD. Cardiovascular mortality was investigated as a secondary outcome. Measures of association in the form of relative risks (RRs) with associated variability and precision (95% confidence intervals [CIs]) were extracted directly from each study, when reported, or were calculated based on the published data, if possible, and pooled RR estimates were determined.
Results:
The meta-analysis included 42 trials with duration ≥12 months: 6 of erythropoietin stimulating agents treating to higher vs. lower hemoglobin targets, 10 of renin-angiotensin-aldosterone system inhibitors vs. placebo or another blood pressure lowering agent, 14 of modified hemodialysis regimens, and 12 of other types of interventions. All-cause mortality was reported in 121/2584 (4.86%) subjects in intervention groups and 168/2606 (6.45%) subjects in control groups. The pooled RR estimate of the 27 trials ≥12 months with ≥1 event in ≥1 group was 0.72 (95% CI 0.57 to 0.90, p = 0.005), with little heterogeneity across studies. Directionalities of the associations in intervention subgroups were the same. Sensitivity analyses of ≥6 months (34 trials), ≥9 months (29 trials), and >12 months (10 trials), and including studies with no events in either group, demonstrated similar risk reductions to the primary analysis. The point estimate for cardiovascular mortality was similar to all-cause mortality, but not statistically significant: RR 0.67, 95% CI 0.39 to 1.16.
Conclusions:
These results suggest that LVM regression may be a useful surrogate marker for benefits of interventions intended to reduce mortality risk in patients with CKD.
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