Aging, oxidative stress and degenerative diseases: mechanisms, complications and emerging therapeutic strategies
- PMID: 37516673
- DOI: 10.1007/s10522-023-10050-1
Aging, oxidative stress and degenerative diseases: mechanisms, complications and emerging therapeutic strategies
Abstract
Aging accompanied by several age-related complications, is a multifaceted inevitable biological progression involving various genetic, environmental, and lifestyle factors. The major factor in this process is oxidative stress, caused by an abundance of reactive oxygen species (ROS) generated in the mitochondria and endoplasmic reticulum (ER). ROS and RNS pose a threat by disrupting signaling mechanisms and causing oxidative damage to cellular components. This oxidative stress affects both the ER and mitochondria, causing proteopathies (abnormal protein aggregation), initiation of unfolded protein response, mitochondrial dysfunction, abnormal cellular senescence, ultimately leading to inflammaging (chronic inflammation associated with aging) and, in rare cases, metastasis. RONS during oxidative stress dysregulate multiple metabolic pathways like NF-κB, MAPK, Nrf-2/Keap-1/ARE and PI3K/Akt which may lead to inappropriate cell death through apoptosis and necrosis. Inflammaging contributes to the development of inflammatory and degenerative diseases such as neurodegenerative diseases, diabetes, cardiovascular disease, chronic kidney disease, and retinopathy. The body's antioxidant systems, sirtuins, autophagy, apoptosis, and biogenesis play a role in maintaining homeostasis, but they have limitations and cannot achieve an ideal state of balance. Certain interventions, such as calorie restriction, intermittent fasting, dietary habits, and regular exercise, have shown beneficial effects in counteracting the aging process. In addition, interventions like senotherapy (targeting senescent cells) and sirtuin-activating compounds (STACs) enhance autophagy and apoptosis for efficient removal of damaged oxidative products and organelles. Further, STACs enhance biogenesis for the regeneration of required organelles to maintain homeostasis. This review article explores the various aspects of oxidative damage, the associated complications, and potential strategies to mitigate these effects.
Keywords: Aging; Antioxidant; Autophagy; Degenerative diseases; Inflammation; Oxidative stress.
© 2023. The Author(s), under exclusive licence to Springer Nature B.V.
References
-
- Addorisio SR, Shteynberg R, Dasilva M, Mixon J, Mucciarone K, Vu L et al (2022) Oxidative stress response in bacteria: a review. Fine Focus 8(1):36–46 - DOI
-
- Adebayo M, Singh S, Singh AP, Dasgupta S (2021) Mitochondrial fusion and fission: the fine-tune balance for cellular homeostasis. FASEB J 35(6):e21620. https://doi.org/10.1096/fj.202100067R - DOI - PubMed
-
- Adwas AA, Elsayed A, Azab AE, Quwaydir FA (2019) Oxidative stress and antioxidant mechanisms in human body. J Appl Biotechnol Bioeng 6(1):43–47. https://doi.org/10.15406/jabb.2019.06.00173 - DOI
-
- Agrawal A, Koslover EF (2021) Optimizing mitochondrial maintenance in extended neuronal projections. PLoS Comput Biol 17(6):e1009073. https://doi.org/10.1371/journal.pcbi.1009073 - DOI - PMC - PubMed
-
- Ahmad A, Ahsan H (2020) Biomarkers of inflammation and oxidative stress in ophthalmic disorders. J Immunoass Immunochem 41(3):257–271. https://doi.org/10.1080/15321819.2020.1726774 - DOI
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