Ageing Causes Ultrastructural Modification to Calcium Release Units and Mitochondria in Cardiomyocytes

Alessia Di Fonso1,2, Laura Pietrangelo1,2, Laura D'Onofrio3

  • 1CAST, Center for Advanced Studies and Technology, University G. d'Annunzio (Ud'A) of Chieti-Pescara, 66100 Chieti, Italy.

Insights

Aging hearts show damaged mitochondria and disorganized calcium release units (CRUs), potentially causing cardiac dysfunction. These structural changes in aged cardiomyocytes may impair ATP and calcium supply, contributing to heart failure.

Area of Science:

  • Cardiovascular Biology
  • Cellular Aging
  • Mitochondrial Dynamics
  • Excitation-Contraction Coupling

Background:

  • Aging is linked to increased heart failure incidence, but age-related cardiomyopathy is debated.
  • Cardiomyocyte function relies on mitochondrial ATP production and proper calcium (Ca2+) handling during excitation-contraction (EC) coupling.
  • Mitochondria and Ca2+ release units (CRUs) are critical for cardiomyocyte contraction and relaxation.

Purpose of the Study:

  • To investigate age-related changes in mitochondria and CRUs in mouse hearts.
  • To determine if structural alterations in these components contribute to cardiac dysfunction in aging.

Main Methods:

  • Confocal and electron microscopy (CM and EM) for structural analysis of mitochondria and CRUs.
  • Immunolabeling to assess the sarcotubular system (SR and T-tubules).
  • Western blot (WB) to detect protein expression (Cav-3, JP-2) and oxidative stress markers (3-NT).

Main Results:

  • Aged hearts exhibited disorganized and damaged mitochondria (16.5% vs 3.5% in adults).
  • CRUs were misoriented and misplaced, with decreased frequency and size in aged hearts.
  • Aged cardiomyocytes showed sarcotubular system disarray, reduced Cav-3/JP-2 expression, and increased oxidative stress (3-NT).

Conclusions:

  • Age-related structural changes in mitochondria and CRUs impair cardiomyocyte function.
  • Disarray in the sarcotubular system and reduced protein expression may underlie these alterations.
  • These findings suggest a potential mechanism for age-related cardiac dysfunction.

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