Oxidative stress, aging, and diseases
Окислительный стресс, старение и заболевания
2018-04-01
SCID: 54.1/b9c8ydqh
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aging-related diseasesantioxidant therapyoxidative stressoxidative stress biomarkersreactive oxygen and nitrogen species
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Abstract (AI)
Reactive oxygen and nitrogen species (RONS) are produced by several endogenous and exogenous processes, and their negative effects are neutralized by antioxidant defenses. Oxidative stress occurs from the imbalance between RONS production and these antioxidant defenses. Aging is a process characterized by the progressive loss of tissue and organ function. The oxidative stress theory of aging is based on the hypothesis that age-associated functional losses are due to the accumulation of RONS-induced damages. At the same time, oxidative stress is involved in several age-related conditions (ie, cardiovascular diseases [CVDs], chronic obstructive pulmonary disease, chronic kidney disease, neurodegenerative diseases, and cancer), including sarcopenia and frailty. Different types of oxidative stress biomarkers have been identified and may provide important information about the efficacy of the treatment, guiding the selection of the most effective drugs/dose regimens for patients and, if particularly relevant from a pathophysiological point of view, acting on a specific therapeutic target. Given the important role of oxidative stress in the pathogenesis of many clinical conditions and aging, antioxidant therapy could positively affect the natural history of several diseases, but further investigation is needed to evaluate the real efficacy of these therapeutic interventions. The purpose of this paper is to provide a review of literature on this complex topic of ever increasing interest.
Key Findings
1
Antioxidant therapy could influence the course of aging-related diseases, but its clinical efficacy requires further investigation.
2
Oxidative stress biomarkers may help assess treatment efficacy, guide drug and dose selection, and identify pathophysiologically relevant therapeutic targets.
3
Oxidative stress is implicated in multiple age-related conditions, including cardiovascular, pulmonary, renal, neurodegenerative, and malignant diseases, as well as sarcopenia and frailty.
4
Oxidative stress results from an imbalance between reactive oxygen and nitrogen species production and antioxidant defenses.
5
The oxidative stress theory of aging proposes that accumulated RONS-induced damage contributes to progressive age-associated losses of tissue and organ function.
Research Object
Oxidative stress (imbalance between reactive oxygen and nitrogen species production and antioxidant defenses) in aging and age-related diseases
Research Subject
The role, mechanisms, biomarkers, and therapeutic implications of oxidative stress, including its contribution to age-related functional decline and disease pathogenesis
Publication Details
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2018-04-01
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