Reduced mitochondrial DNA and OXPHOS protein content in skeletal muscle of children with cerebral palsy

Research output: Contribution to journalJournal articleResearchpeer-review

  • Ferdinand von Walden
  • Ivan J. Vechetti
  • Davis Englund
  • Vandre C. Figueiredo
  • Rodrigo Fernandez-Gonzalo
  • Kevin Murach
  • Pingel, Jessica
  • John J. Mccarthy
  • Per Stal
  • Eva Ponten

AIM To provide a detailed gene and protein expression analysis related to mitochondrial biogenesis and assess mitochondrial content in skeletal muscle of children with cerebral palsy (CP).

METHOD Biceps brachii muscle samples were collected from 19 children with CP (mean [SD] age 15y 4mo [2y 6mo], range 9-18y, 16 males, three females) and 10 typically developing comparison children (mean [SD] age 15y [4y], range 7-21y, eight males, two females). Gene expression (quantitative reverse transcription polymerase chain reaction [PCR]), mitochondrial DNA (mtDNA) to genomic DNA ratio (quantitative PCR), and protein abundance (western blotting) were analyzed. Microarray data sets (CP/aging/bed rest) were analyzed with a focused query investigating metabolism- and mitochondria-related gene networks.

RESULTS The mtDNA to genomic DNA ratio was lower in the children with CP compared to the typically developing group (-23%, p=0.002). Out of five investigated complexes in the mitochondrial respiratory chain, we observed lower protein levels of all complexes (I, III, IV, V, -20% to -37%; p

INTERPRETATION Mitochondrial biogenesis, mtDNA, and oxidative phosphorylation protein content are reduced in CP muscle compared with typically developing muscle. Transcriptional pathways shared between aging and long-term unloading suggests metabolic dysregulation in CP, which may guide therapeutic strategies for combatting CP muscle pathology.

Original languageEnglish
JournalDevelopmental Medicine and Child Neurology
Volume63
Issue number10
Pages (from-to)1204-1212
Number of pages9
ISSN0012-1622
DOIs
Publication statusPublished - 2021

    Research areas

  • YOUNG-PEOPLE, EXERCISE, CAPACITY, ADULTS, EXPRESSION, RESISTANCE, MODELS

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