Aging Clinical Trial
Official title:
Systemic and Localized Stress Resilience in Aging: Effects of Physical Fitness
The purpose of this study is to test the hypothesis that physiological adaptations to regular exercise training (i.e. physical fitness) attenuates age-related decline in stress resilience to both oxidative stress and the neuroendocrine responses to psychosocial stress.
Aging is associated with diminished stress resilience, as in reduced ability to manage or
recover from acute changes in homeostasis. Increased oxidative damage to cells and tissues
and dysregulation of stress hormones have been linked to age-associated chronic diseases
including atherosclerosis, cancer, cardiovascular disease and Alzheimer's disease.
Interventions to improve the body's resistance to stress, resulting in lower oxidative
stress and better regulation of the stress hormones, may prevent or delay the onset of
age-related diseases and improve quality of life.
Oxidative stress is believed to be a key mechanism in the aging process, with free radicals
also implicated in many pathological processes. Similarly, dysregulation of the
hypothalamic-pituitary-adrenal (HPA) axis is thought to play a role in aging and is linked
to the increased risk for age-related chronic disease.
The hormesis theory suggests that a certain amount of stress can lead to better survival and
reduced tissue damage following a subsequent, more severe stress. One way to stress the
system is through acute exercise. Regular exercise training, however, results in adaptive
responses that increase the tolerance for successive (exercise) stress.
A relevant question is whether adaptations to regular exercise training translate to greater
resilience to psychosocial stress and an increased capacity to resist acute oxidative
stress, thereby providing increased protection from diseases associated with dysregulation
of these systems.
This study will investigate stress resilience in two areas related to aging: oxidative
stress and the neuroendocrine response to psychosocial stress. The effects of physical
fitness on oxidative stress compensation and neuroendocrine stress reactivity will be
determined by comparing fit and unfit older men and women. The overall aim of this study is
to provide enhanced understanding of the mechanisms by which physical fitness modifies
stress resilience in older men and women.
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Observational Model: Case Control, Time Perspective: Prospective
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