Long-term testosterone deficiency modifies myofilament and calcium-handling proteins and promotes diastolic

Omar Ayaz1, Shubham Banga1, Stefan Heinze-Milne1

  • 1Department of Pharmacology, Dalhousie University , Halifax, Nova Scotia , Canada.

Insights

Long-term gonadectomy (GDX) in aging male mice impaired cardiac diastolic function by slowing calcium (Ca2+) transient decay and relaxation. This testosterone deficiency led to intracellular Ca2+ dysregulation and myofilament dysfunction, contributing to heart problems.

Area of Science:

  • Cardiovascular Physiology
  • Endocrinology
  • Aging Research

Background:

  • Aging male hearts face functional decline.
  • Testosterone deficiency from gonadectomy (GDX) may impact cardiac function.
  • Understanding GDX effects on aging hearts is crucial for cardiovascular health.

Purpose of the Study:

  • To investigate the long-term effects of GDX on cardiac contractile function in aging male mice.
  • To identify molecular mechanisms underlying GDX-induced cardiac dysfunction.
  • To determine if testosterone deficiency contributes to diastolic dysfunction in aging hearts.

Main Methods:

  • Male mice underwent bilateral GDX or sham operation.
  • Cardiac function assessed using ventricular myocyte electrophysiology and contractility measurements.
  • Protein levels of Ca2+ handling and myofilament proteins analyzed via Western blot.
  • Echocardiography used to evaluate in vivo cardiac systolic and diastolic function.

Main Results:

  • GDX prolonged Ca2+ transient decay and myocyte relaxation without altering peak responses.
  • Elevated phospholamban protein levels and reduced myosin light chain phosphorylation observed in GDX hearts.
  • Echocardiography revealed slowed isovolumic relaxation time, indicating diastolic dysfunction.
  • Systolic function remained unchanged, highlighting a specific impact on diastolic properties.

Conclusions:

  • Long-term GDX induces diastolic dysfunction in aging male hearts.
  • Testosterone deficiency contributes to cardiac dysfunction through impaired intracellular Ca2+ handling and myofilament alterations.
  • These findings suggest a role for testosterone in maintaining cardiac diastolic health during aging.

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