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.
Abstract

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