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The Role of Oxidative Stress in the Aging Heart
Luana U Pagan1, Mariana J Gomes2, Mariana Gatto1
1Internal Medicine Department, Botucatu Medical School, Sao Paulo State University (UNESP), Botucatu 18618 687, Brazil.
Insights
Cardiac aging involves increased oxidative stress and cellular changes, impacting heart function. Understanding these mechanisms is key to preventing age-related cardiovascular disease and promoting heart health.
Area of Science:
- Cardiology
- Gerontology
- Molecular Biology
Background:
- Increased life expectancy due to medical advances leads to a larger elderly population.
- Age is a significant risk factor for cardiovascular disease (CVD).
- Understanding cardiac aging is critical for managing age-related CVD.
Purpose of the Study:
- To review recent research on cardiac aging mechanisms.
- To highlight molecular pathways and cellular processes in aging hearts.
- To identify potential molecular targets for preventing age-driven heart pathology.
Main Methods:
- Literature review of published research on cardiac aging.
- Summary of key molecular pathways and cellular processes.
- Discussion of oxidative stress, antioxidant defenses, mitochondria, and metabolic alterations.
Main Results:
- Oxidative stress, driven by reactive oxygen species (ROS), is a major factor in cardiac aging.
- ROS imbalance leads to myocyte hypertrophy, fibrosis, and contractile dysfunction.
- Dysfunctional mitochondria and metabolic changes contribute significantly to cardiac aging.
Conclusions:
- Cardiac aging involves complex redox signaling and cellular changes.
- Understanding these processes can guide the development of interventions for age-related heart disease.
- Mitigating cardiac aging can reduce the burden of CVD in older adults.
Abstract:
Medical advances and the availability of diagnostic tools have considerably increased life expectancy and, consequently, the elderly segment of the world population. As age is a major risk factor in cardiovascular disease (CVD), it is critical to understand the changes in cardiac structure and function during the aging process. The phenotypes and molecular mechanisms of cardiac aging include several factors. An increase in oxidative stress is a major player in cardiac aging. Reactive oxygen species (ROS) production is an important mechanism for maintaining physiological processes; its generation is regulated by a system of antioxidant enzymes. Oxidative stress occurs from an imbalance between ROS production and antioxidant defenses resulting in the accumulation of free radicals. In the heart, ROS activate signaling pathways involved in myocyte hypertrophy, interstitial fibrosis, contractile dysfunction, and inflammation thereby affecting cell structure and function, and contributing to cardiac damage and remodeling. In this manuscript, we review recent published research on cardiac aging. We summarize the aging heart biology, highlighting key molecular pathways and cellular processes that underlie the redox signaling changes during aging. Main ROS sources, antioxidant defenses, and the role of dysfunctional mitochondria in the aging heart are addressed. As metabolism changes contribute to cardiac aging, we also comment on the most prevalent metabolic alterations. This review will help us to understand the mechanisms involved in the heart aging process and will provide a background for attractive molecular targets to prevent age-driven pathology of the heart. A greater understanding of the processes involved in cardiac aging may facilitate our ability to mitigate the escalating burden of CVD in older individuals and promote healthy cardiac aging.
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