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Updated: Feb 20, 2026

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Relationship Between Visit-to-Visit Blood Pressure Variability (BPV) and Kidney Function in Patients with
Insights
Declining kidney function, measured by estimated glomerular filtration rate (eGFR), is linked to higher blood pressure variability (BPV) in hypertensive patients. Amlodipine-based treatments effectively reduced BPV across all eGFR levels.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Clinical Trials
Background:
- Hypertension management is complex, with blood pressure variability (BPV) being an emerging risk factor.
- Kidney function, assessed by estimated glomerular filtration rate (eGFR), may influence BPV, but this relationship requires further investigation.
Purpose of the Study:
- To investigate the impact of baseline kidney function (eGFR) on blood pressure variability (BPV) in hypertensive patients.
- To evaluate the effectiveness of amlodipine-based antihypertensive therapy on BPV in relation to eGFR levels.
Main Methods:
- Retrospective post hoc analysis of two large randomized controlled trials (ASCOT and ALLHAT) involving hypertensive patients.
- Systolic blood pressure variability (SBPV) was calculated using the square root of the coefficient of variation from visit-to-visit data.
- Patients were stratified by baseline eGFR (≤60, 61-90, >90 mL/min/1.73 m2) and analyzed using ANCOVA.
Main Results:
- A significant association was found between lower baseline eGFR and higher systolic BPV in the pooled population (n=38,133) and individual trials.
- Predictors of higher SBPV included lower eGFR, higher systolic blood pressure, older age, male sex, and smoking.
- Amlodipine-based regimens were associated with reduced SBPV compared to other antihypertensives, irrespective of eGFR.
Conclusions:
- Hypertensive patients with impaired renal function exhibit increased systolic BPV, even after adjusting for other risk factors.
- Amlodipine-based therapy demonstrates a consistent benefit in reducing BPV across varying levels of kidney function.
Background/Aims:
To investigate the impact of kidney function (using estimated glomerular filtration rate, [eGFR]) on blood pressure variability (BPV) via a retrospective post hoc analysis of patients with hypertension enrolled in two large clinical trials.
Methods:
Subject-level data were extracted from ASCOT (N=18,852) and ALLHAT (N=26,441) databases; both were randomized, active controlled studies, with treatment duration for hypertension ≥4 years. Visit-to-visit BPV was assessed using the square root of the coefficient of variation of systolic blood pressure (SBP) across visits from 12 weeks onwards. Baseline GFR, estimated by the simplified Modification of Diet in Renal Disease equation, was stratified into ≤60, 61-90, and >90 mL/min/1.73 m2. The relationship between baseline eGFR and systolic BPV was analyzed using an analysis of covariance, with baseline factors considered as covariates. Studies were pooled and analyzed individually.
Results:
Patient characteristics were largely consistent between studies. In the pooled population (n=38,133) there were 19.1%, 62.9%, and 18.0% patients, with eGFR ≤60, 61-90, and > 90 mL/min/1.73 m2, respectively. Patients with lower baseline eGFR had higher systolic BPV, in the pooled population and the individual analyses. Other baseline predictors of high systolic BPV included high SBP and age, being male, and a smoker. An amlodipine-based regimen was a negative predictor of high systolic BPV, vs. other antihypertensives, regardless of eGFR.
Conclusions:
Patients with declining renal function tended to have higher systolic BPV vs. those without, even after adjusting for risk factors. Amlodipine-based therapy reduced BPV more than other antihypertensive agents, regardless of level of eGFR.
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