Differences in cardiovascular responses to isoproterenol in relation to age and exercise training in healthy men

J R Stratton1, M D Cerqueira, R S Schwartz

  • 1Department of Medicine, Seattle VA Medical Center, WA 98108.

Circulation
|August 1, 1992
PubMed

Insights

Cardiac aging reduces responses to beta-agonist stimulation in healthy men, impacting heart rate, blood pressure, and ejection fraction. Exercise training did not improve these age-related beta-adrenergic declines.

Area of Science:

  • Cardiology
  • Gerontology
  • Exercise Physiology

Background:

  • Cardiac aging is associated with reduced heart rate response to beta-agonist stimulation.
  • The impact of aging on ejection fraction and other cardiovascular responses to beta-agonists in humans is not well understood.
  • The potential for exercise training to improve these age-related beta-agonist responses remains undetermined.

Purpose of the Study:

  • To investigate age-associated differences in cardiovascular responses to isoproterenol in healthy men.
  • To determine if endurance exercise training can enhance beta-adrenergic cardiovascular responses in older and younger men.

Main Methods:

  • Cardiovascular responses to graded isoproterenol infusions were measured in young and older healthy men.
  • Subjects underwent 6 months of endurance training, followed by retesting of cardiovascular responses.
  • Maximal oxygen consumption was assessed to evaluate training effects.

Main Results:

  • Older men exhibited significantly reduced responses in heart rate, systolic blood pressure, diastolic blood pressure, ejection fraction, and cardiac output to isoproterenol compared to younger men.
  • Intensive endurance training increased maximal oxygen consumption in both age groups but did not alter cardiovascular responses to isoproterenol.
  • Plasma isoproterenol concentrations were similar between groups and unchanged after training.

Conclusions:

  • Healthy aging is associated with a decline in cardiovascular responses to beta-adrenergic stimulation, including heart rate, blood pressure, ejection fraction, and cardiac output.
  • These altered beta-adrenergic responses likely contribute to reduced cardiac function during maximal exercise in older adults.
  • Intensive exercise training does not reverse the age-associated decline in beta-adrenergic cardiovascular responsiveness.
Abstract

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