Baseline characteristics and feasibility of clinical outcome measures in CDKL5 deficiency disorder: The CANDID

Xavier Liogier d'Ardhuy1, , Tricia Cimms2

  • 1Loulou Foundation, London, UK.

Epilepsia
|January 14, 2026
PubMed
Abstract

Insights

The Clinical Assessment of Neurodevelopmental Measures in CDD (CANDID) study found that while most scales effectively capture deficits in CDKL5 deficiency disorder (CDD), the GMFM-88 is unsuitable for trials. These findings aid in optimizing future CDD clinical trial designs.

Area of Science:

  • Neuroscience
  • Genetics
  • Clinical Trials

Background:

  • CDKL5 deficiency disorder (CDD) is a severe X-linked neurodevelopmental disorder.
  • Loss-of-function variants in the CDKL5 gene cause CDD.
  • Developing effective therapies for CDD requires standardized clinical endpoints.

Purpose of the Study:

  • To harmonize nonseizure clinical endpoint selection for CDD efficacy trials.
  • To evaluate the feasibility and suitability of neurocognitive tests and functioning scales in CDD patients.
  • To assess disease-related deficits and phenotype variability in CDD.

Main Methods:

  • The Clinical Assessment of Neurodevelopmental Measures in CDD (CANDID) is a 3-year, longitudinal, noninterventional global study.
  • Involved children and adults with CDD, with on-site and remote visits.
  • Utilized clinical, behavioral, developmental, and quality of life assessments.

Main Results:

  • 111 CDD patients (mean age 8.3 years) were analyzed; 93% were female.
  • Common comorbidities included gastrointestinal issues, muscle tone abnormalities, and sleep disorders.
  • The Gross Motor Function Measure-88 (GMFM-88) showed floor effects; Vineland-3 and Bayley-4 scores were derivable and showed age-related improvements. Sleep disturbances and reduced quality of life were prevalent.

Conclusions:

  • Selected scales capture CDD deficits and variability, with floor effects indicating disease severity.
  • The GMFM-88 is unsuitable for CDD trials due to lack of granularity and operational limitations.
  • Baseline analyses support the feasibility and value of most scales for optimizing future CDD clinical trial design and endpoint selection.

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