The Role of Oxidative Stress in the Aging Heart
Luana U Pagan, Mariana J Gomes, Mariana Gatto, Gustavo A F Mota, Katashi Okoshi, Marina P Okoshi

TL;DR
This paper reviews how oxidative stress contributes to the aging heart and highlights molecular pathways that could help prevent age-related heart disease.
Contribution
The paper provides a comprehensive review of oxidative stress and redox signaling in cardiac aging, emphasizing potential molecular targets for intervention.
Findings
Oxidative stress from imbalanced ROS production and antioxidant defenses contributes to cardiac aging.
ROS activates pathways leading to myocyte hypertrophy, fibrosis, and inflammation in the heart.
Dysfunctional mitochondria and metabolic changes are key factors in age-related cardiac decline.
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,…
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Taxonomy
TopicsCardiovascular Function and Risk Factors · Redox biology and oxidative stress · Mitochondrial Function and Pathology
