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A Novel Digital Platform for a Monitored Home-based Cardiac Rehabilitation Program
Published on: April 19, 2019
Cardiac Aging - Benefits of Exercise, Nrf2 Activation and Antioxidant Signaling
Madhusudhanan Narasimhan1, Namakkal-Soorappan Rajasekaran2,3
1Department of Pharmacology and Neuroscience, Texas Tech University Health Sciences Center, Lubbock, TX, 79430, USA. rajnsr@uabmc.edu.
Insights
Aging hearts face dysfunction due to oxidative stress. Exercise may activate the Nrf2 pathway, a key antioxidant defense, to combat this age-related cardiac decline and improve heart health.
Area of Science:
- Cardiovascular Aging Research
- Molecular Cardiology
- Oxidative Stress Biology
Background:
- Aging impairs cardiac function and quality of life, increasing heart failure risk.
- Oxidative stress (OS) and reactive oxygen species (ROS) accumulation accelerate cardiac aging and lead to complications.
- Current medical management for age-related cardiovascular disease shows limited improvement due to multifactorial mechanisms.
Purpose of the Study:
- To explore the role of Nuclear Erythroid 2-Related Factor 2 (Nrf2) signaling in cardiac aging.
- To investigate the effects of various exercise modes on Nrf2 activation in the aging heart.
- To understand the impact of exercise-induced Nrf2 modulation on oxidative stress pathways in myocardial aging.
Main Methods:
- Review of existing literature on Nrf2 signaling and its cytoprotective effects in various organs.
- Analysis of studies investigating the link between exercise, Nrf2 activation, and oxidative stress.
- Exploration of non-pharmacological induction of Nrf2 in the context of cardiac aging.
Main Results:
- Nrf2 is a master regulator of antioxidant genes, crucial for combating OS.
- Pharmacological Nrf2 activation shows cytoprotective benefits in multiple organs.
- Limited research exists on Nrf2's role and non-pharmacological induction in cardiac aging, particularly concerning exercise interventions.
Conclusions:
- Exercise may represent a viable non-pharmacological strategy to enhance Nrf2 signaling in the aging heart.
- Activating Nrf2 through exercise could mitigate age-related cardiac oxidative damage and dysfunction.
- Further research is needed to elucidate the specific effects of different exercise modalities on cardiac Nrf2 pathways and their anti-aging potential.
Abstract:
Cardiovascular dysfunction and heart failure associated with aging not only impairs the cardiac function but also the quality of life eventually decreasing the life expectancy of the elderly. Notably, cardiac tissue can prematurely age under certain conditions such as genetic mutation, persistent redox stress and overload, aberrant molecular signaling, DNA damage, telomere attrition, and other pathological insults. While cardiovascular-related morbidity and mortality is on the rise and remains a global health threat, there has been only little to moderate improvements in its medical management. This is due to the fact that the lifestyle changes to molecular mechanisms underlying age-related myocardial structure and functional remodeling are multifactorial and intricately operate at different levels. Along these lines, the intrinsic redox mechanisms and oxidative stress (OS) are widely studied in the myocardium. The accumulation of reactive oxygen species (ROS) with age and the resultant oxidative damage has been shown to increase the susceptibility of the myocardium to multiple complications such as atherosclerosis, hypertension, ischemic heart disease, cardiac myopathy, and heart failure. There has been growing interest in trying to enhance the mechanisms that neutralize the ROS and curtailing OS as a possible anti-aging intervention and as a treatment for age-related disorders. Natural defense system to fight against OS involves a master transcription factor named nuclear erythroid-2-p45-related factor-2 (Nrf2) that regulates several antioxidant genes. Compelling evidence exists on the Nrf2 gain of function through pharmacological interventions in counteracting the oxidative damage and affords cytoprotection in several organs including but not limited to lung, liver, kidney, brain, etc. Nevertheless, thus far, only a few studies have described the potential role of Nrf2 and its non-pharmacological induction in cardiac aging. This chapter explores the effects of various modes of exercise on Nrf2 signaling along with its responses and ramifications on the cascade of OS in the aging heart.
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