Key result
In patients with advanced kidney disease not on dialysis, the highest quartile of pulse pressure was associated with a 67% higher risk of cardiovascular events compared to the lowest quartile (HR 1.67).
Why the study?
Does elevated blood pressure or pulse pressure increase the risk of death, cardiovascular events, and progression to dialysis in patients with advanced CKD?
Cohort (n=1,099)
Yes
Does elevated blood pressure or pulse pressure increase the risk of death, cardiovascular events, and progression to dialysis in patients with advanced CKD?
Hazard Ratio: 1.67 (95% CI 1.1–2.52)
In patients with advanced CKD not on dialysis, higher pulse pressure is strongly associated with cardiovascular events, while higher systolic and diastolic blood pressures are associated with progression to dialysis.
Should not yet change BP targets in advanced nondialysis CKD; leaves open whether pulse pressure is a modifiable target.
BACKGROUND AND OBJECTIVE: The optimal BP target to reduce adverse clinical outcomes in patients with CKD is unclear. This study examined the relationship between BP and death, cardiovascular events (CVEs), and kidney disease progression in patients with advanced kidney disease. DESIGN, SETTING, PARTICIPANTS, & MEASUREMENTS: The relationship of systolic BP (SBP), diastolic BP (DBP), and pulse pressure (PP) with death, CVE, and progression to long-term dialysis was examined in 1099 patients with advanced CKD (eGFR≤30 ml/min per 1.7 3m(2); not receiving dialysis) who participated in the Homocysteine in Kidney and ESRD study. That study enrolled participants from 2001 to 2003. Cox proportional hazard models were used to examine the association between BP and adverse outcomes. RESULTS: The mean±SD baseline eGFR was 18±7 ml/min per 1.73 m(2). During a median follow-up of 2.9 years, 453 patients died, 215 had a CVE, and 615 initiated long-term dialysis. After adjustment for demographic characteristics and confounders, SBP, DBP, and PP were not associated with a higher risk of death. SBP and DBP were also not associated with CVE. The highest quartile of PP was associated with a substantial higher risk of CVE compared with the lowest quartile (hazard ratio [HR], 1.67; 95% confidence interval [95% CI], 1.10 to 2.52). The highest quartiles of SBP (HR, 1.28; 95% CI, 1.01 to 1.61) and DBP (HR, 1.36; 95% CI, 1.07 to 1.73), but not PP, were associated with a higher risk of progression to long-term dialysis compared with the lowest quartile. CONCLUSIONS: In patients with advanced kidney disease not undergoing dialysis, higher PP was strongly associated with CVE whereas higher SBP and DBP were associated with progression to long-term dialysis. These results suggest that SBP and DBP should not be the only factors considered in determining antihypertensive therapy; elevated PP should also be considered.
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Palit et al. (2015) conducted a cohort in Advanced Chronic Kidney Disease (n=1,099). Pulse pressure (highest vs lowest quartile) vs. Lowest quartile of pulse pressure was evaluated on Cardiovascular events (composite of myocardial infarction, stroke, and amputation) (HR 1.67, 95% CI 1.10 to 2.52). In patients with advanced kidney disease not on dialysis, the highest quartile of pulse pressure was associated with a 67% higher risk of cardiovascular events compared to the lowest quartile (HR 1.67).
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