Enduring metabolic modulation in the cardiac tissue of elderly CD-1 mice two months post mitoxantrone treatment

Sofia Reis Brandão1, Pedro Fontes Oliveira2, Bárbara Guerra-Carvalho3

  • 1Associate Laboratory i4HB - Institute for Health and Bioeconomy, Faculty of Pharmacy, University of Porto, 4050-313 Porto, Portugal; UCIBIO - Applied Molecular Biosciences Unit, Laboratory of Toxicology, Department of Biological Sciences, Faculty of Pharmacy, University of Porto, 4050-313 Porto, Portugal; LAQV - REQUIMTE and Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.

PubMed

Insights

Mitoxantrone (MTX) causes cardiac changes and metabolic alterations in aged mice, even two months post-treatment. This study reveals enduring cardiotoxicity effects requiring clinical vigilance in older patients.

Area of Science:

  • Cardiology
  • Toxicology
  • Biochemistry

Background:

  • Mitoxantrone (MTX) is a chemotherapy drug with known cardiotoxicity.
  • The molecular mechanisms of MTX-induced cardiotoxicity, especially in aging populations, are not fully understood.
  • Age is a significant risk factor influencing MTX cardiotoxicity.

Purpose of the Study:

  • To investigate the long-term molecular and metabolic effects of MTX on the cardiac muscle of aged male mice.
  • To assess structural and metabolic changes in the heart following MTX administration in elderly mice.

Main Methods:

  • Aged male CD-1 mice (19 months old) received a cumulative dose of 4.5 mg/kg MTX or saline.
  • Cardiac tissue and blood were analyzed two months after treatment.
  • Evaluated extracellular matrix remodeling, metabolic profiles, and proteolysis markers.

Main Results:

  • MTX induced structural cardiac changes and extracellular matrix remodeling.
  • Metabolic analysis revealed decreased glycerol and altered electron transfer flavoprotein dehydrogenase levels.
  • Evidence of reduced glycolysis (lower GLUT4, phosphofructokinase) and decreased proteolysis (lower Atrogin-1) was observed.
  • Fatty acid oxidation appeared to be upregulated despite no significant mitochondrial remodeling.

Conclusions:

  • MTX exposure in aged mice leads to persistent cardiac structural and metabolic alterations.
  • The findings highlight potential long-term cardiotoxic effects of MTX in older individuals.
  • Enduring metabolic changes suggest a need for clinical vigilance in elderly patients treated with MTX.