Electrophysiological biomarkers of brain function in CDKL5 deficiency disorder

Joni N Saby1, Patrick J Mulcahey2, Alexis E Zavez3

  • 1Division of Radiology Research, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

Brain Communications
|August 17, 2022
PubMed

Insights

Electrophysiological measures like evoked potentials and quantitative EEG can objectively assess brain function and disease severity in CDKL5 deficiency disorder, aiding future clinical trials for this rare neurological condition.

Area of Science:

  • Neuroscience
  • Clinical Electrophysiology
  • Biomarker Discovery

Background:

  • CDKL5 deficiency disorder (CDD) is a severe neurodevelopmental and epileptic encephalopathy with no targeted treatments.
  • Objective biomarkers are needed to evaluate new CDD therapeutics.
  • This study aimed to quantify electrophysiological measures and their association with CDD clinical severity.

Purpose of the Study:

  • To identify and validate electrophysiological biomarkers for CDD.
  • To assess the correlation between evoked potentials, quantitative EEG, and clinical severity in CDD patients.
  • To evaluate the repeatability of these measures for longitudinal studies.

Main Methods:

  • Acquired visual and auditory evoked potentials and resting EEG from 26 individuals with CDD across 5 sites.
  • Compared electrophysiological features with a typically developing cohort.
  • Analyzed baseline and Year 1 data, correlating measures with clinician-completed severity scales.

Main Results:

  • Reduced visual evoked potential amplitude observed in individuals with CDD compared to controls.
  • Auditory evoked potential amplitude correlated with CDD severity at baseline and Year 1.
  • Multiple quantitative EEG features differed between groups, with theta/delta ratio showing the strongest correlation with severity and high repeatability.

Conclusions:

  • Evoked potentials and quantitative EEG are promising objective biomarkers for brain function and severity in CDD.
  • These electrophysiological measures can support the development and evaluation of novel CDD treatments.
  • The methodology can be applied to identify biomarkers for other developmental encephalopathies.

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