Related Experiment Video
Updated: Jul 12, 2025

5/6 Nephrectomy Using Sharp Bipolectomy Via Midline Laparotomy in Rats
Published on: April 4, 2025
Development and Validation of a New Hierarchical Composite End Point for Clinical Trials of Kidney Disease
Hiddo J L Heerspink1,2, Niels Jongs1, Patrick Schloemer3
1Department of Clinical Pharmacy and Pharmacology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Insights
A new hierarchical composite end point (HCE) for kidney disease trials prioritizes clinical outcomes and combines GFR slope, offering a more powerful alternative to existing methods.
Area of Science:
- Nephrology
- Clinical Trials
- Biostatistics
Background:
- Established kidney composite end points lack weighting for clinical importance.
- Hierarchical composite end points (HCE) account for component clinical importance.
- HCEs can combine dichotomous outcomes with continuous measures like GFR slope.
Purpose of the Study:
- Develop and validate a kidney HCE.
- Incorporate clinical kidney outcomes and longitudinal GFR changes (GFR slope).
- Assess HCE performance against established end points in major trials.
Main Methods:
- Post hoc analysis of seven Phase 3 placebo-controlled kidney trials.
- Calculated win odds (WO) for treatment effects on a kidney HCE.
- HCE included mortality, kidney failure, GFR decline, and GFR slope.
Main Results:
- Treatment effect estimates using WO were consistent in direction and magnitude with hazard ratios (HR).
- Smaller HRs corresponded to larger WOs, indicating similar treatment effect direction.
- HCE incorporation offers increased statistical power at equivalent sample sizes.
Conclusions:
- The kidney HCE is an attractive alternative to the established composite end point.
- HCE prioritizes clinical outcomes and includes broader composite measures.
- HCE provides consistent and powerful treatment effect estimates in kidney disease trials.
Significance Statement:
The established composite kidney end point in clinical trials combines clinical events with sustained large changes in GFR but does not weigh the relative clinical importance of the end point components. By contrast, a hierarchical composite end point (HCE) accounts for the clinical importance of the end point components. The authors developed and validated a kidney HCE that combines clinical kidney outcomes with longitudinal GFR changes (GFR slope). They demonstrate that in seven major placebo-controlled kidney outcome trials with different medications, treatment effect estimates on the HCE were consistently in similar directions and of similar magnitudes compared with treatment effects on the established kidney end point. The HCE's prioritization of clinical outcomes and ability to combine dichotomous outcomes with GFR slope make it an attractive alternative to the established kidney end point.
Background:
The established composite kidney end point in clinical trials combines clinical events with sustained large changes in GFR. However, the statistical method does not weigh the relative clinical importance of the end point components. A HCE accounts for the clinical importance of the end point components and enables combining dichotomous outcomes with continuous measures.
Methods:
We developed and validated a new HCE for kidney disease progression, performing post hoc analyses of seven major Phase 3 placebo-controlled trials that assessed the effects of canagliflozin, dapagliflozin, finerenone, atrasentan, losartan, irbesartan, and aliskiren in patients with CKD. We calculated the win odds (WOs) for treatment effects on a kidney HCE, defined as a hierarchical composite of all-cause mortality; kidney failure; sustained 57%, 50%, and 40% GFR declines from baseline; and GFR slope. The WO describes the odds of a more favorable outcome for receiving the active compared with the control. We compared the WO with the hazard ratio (HR) of the primary kidney outcome of the original trials.
Results:
In all trials, treatment effects calculated with the WO reflected a similar direction and magnitude of the treatment effect compared with the HR. Clinical trials incorporating the HCE would achieve increased statistical power compared with the established composite end point at equivalent sample sizes.
Conclusions:
In seven major kidney clinical trials, the WO and HR provided similar direction of treatment effect estimates with smaller HRs associated with larger WOs. The prioritization of clinical outcomes and inclusion of broader composite end points makes the HCE an attractive alternative to the established kidney end point.
Related Concept Videos
Chronic Kidney Disease III: Interprofessional Care
Acute Kidney Injury IV: Diagnostic Studies and Prevention
Chronic Kidney Disease I: Introduction
Chronic Kidney Disease II: Clinical Manifestations
Chronic Kidney Disease IV: Nursing Management
Acute Kidney Injury III: Clinical Manifestations

