Chronic pro-oxidative state and mitochondrial dysfunctions are more pronounced in fibroblasts from down syndrome foeti with congenital heart defects

Claudia Piccoli, Antonella Izzo, Rosella Scrima, Ferdinando Bonfiglio, Rosanna Manco, Rosa Negri, Giovanni Quarato, Olga Cela, Maria Ripoli, Marina Prisco, Flaviana Gentile, Gaetano Calì, Paolo Pinton, Anna Conti, Lucio Nitsch, Nazzareno Capitanio

Research output: Contribution to journalArticlepeer-review

Abstract

Trisomy of chromosome 21 is associated to congenital heart defects in ~50% of affected newborns. Transcriptome analysis of hearts from trisomic human foeti demonstrated that genes involved in mitochondrial function are globally downregulated with respect to controls, suggesting an impairment of mitochondrial function. Weinvestigated here the properties of mitochondria in fibroblasts from trisomic foeti with and without cardiac defects. Together with the upregulation of Hsa21 genes and the downregulation of nuclear encoded mitochondrial genes, an abnormal mitochondrial cristae morphology was observed in trisomic samples. Furthermore, impairment ofmitochondrial respiratory activity, specific inhibition of complex I, enhanced reactive oxygen species production and increased levels of intra-mitochondrial calcium were demonstrated. Seemingly, mitochondrial dysfunction was more severe in fibroblasts from cardiopathic trisomic foeti that presented a more pronounced pro-oxidative state. The data suggest that an altered bioenergetic background in trisomy 21 foeti might beamong the factors responsible for amore severe phenotype. Since the mitochondrial functional alterations might be rescued following pharmacological treatments, these results are of interest in the light of potential therapeutic interventions.

Original languageEnglish
Pages (from-to)1218-1232
Number of pages15
JournalHuman Molecular Genetics
Volume22
Issue number6
DOIs
Publication statusPublished - Mar 2013

ASJC Scopus subject areas

  • Genetics
  • Genetics(clinical)
  • Molecular Biology

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