Caffeine Protects Skin from Oxidative Stress-Induced Senescence through the Activation of Autophagy
Li YF, Ouyang SH, Tu LF, Wang X, Yuan WL, Wang GE, Wu YP, Duan WJ, Yu HM, Fang ZZ, Kurihara H, Zhang Y, He RR
Theranostics · 155 citations
Review labels
Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.
How it was studied
- Design
- In vitro/mechanistic study (classified by our AI screen)
- Studied in
- Cells or lab samples
- Main outcome
- Mechanisms only
Who paid for it
- Funding
- Independent funding
- Government
- National Cancer Institute
- Government
- NCI NIH HHS
- Grants
- National Cancer Institute (R01-CA230453)
Based on 2 listed funder(s) and full-text disclosure statement.
Publication
- Published
- 2018-01-01 · Theranostics · vol. 8 · issue 20 · pp. 5713–5730
- Publisher
- Ivyspring International Publisher
- Cited
- 202 citations · more than 98% of similar papers · 6.8× the field average
- Impact
- Top 10% most cited in its field
- References
- 77 works
- Access
- Open access (journal) · CC-BY-NC
- Research areas
- Sirtuins and Resveratrol in Medicine · Autophagy in Disease and Therapy · Skin Protection and Aging
- Keywords
- Oxidative stress, Senescence, Reactive oxygen species, Autophagy, Caffeine, Cell biology, Chemistry, Gene knockdown, Biology, Biochemistry, Apoptosis
- MeSH
- cells, cultured, skin, animals, humans, mice, skin diseases, disease models, animal, amidines, caffeine, antioxidants, oxidants, treatment outcome, ultraviolet rays, oxidative stress, aging, models, theoretical, autophagy
13 authors
From CN, US
- Yifang LiJinan University
- Shu‐Hua OuyangJinan University
- Long‐Fang TuJinan University
- Xi WangJinan University
- Wei‐Lin YuanJinan University
- Guo-En WangJinan University
Abstract
Skin cells are vulnerable to oxidative stress-induced senescence, which may lead to abnormal aging or aging-related disorders. Therefore, strategies that can ameliorate oxidative stress-induced senescence are expected to protect skin from damage, holding the promise of treating skin diseases in the clinic. This study aims to investigate whether caffeine, a well-known purine alkaloid, is able to prevent skin from oxidative stress-induced senescence, and to explore the underlying molecular mechanisms. Methods: A free radical inducer 2,2'-Azobis (2-amidinopropane) dihydrochloride (AAPH) was used to induce oxidative stress and cellular senescence in both transformed skin cells and in normal human epidermal keratinocytes (NHEKs). Ultraviolet (UV) irradiation was established as the in vivo oxidative stress model in mouse skin tissues. Cellular senescence was determined by SA β-galactosidase staining, immunofluorescence and western blotting. Activation of autophagy was confirmed by western blotting, immunofluorescence, and transmission electron microscopy. Reactive oxygen species (ROS) detection by commercial kits, gene knockdown by RNA interference (RNAi) and receptor activation/inactivation by agonist/antagonist treatment were applied in mechanistic experiments. Results: We report that AAPH induced senescence in both transformed skin cells and in NHEKs. Similarly, UV irradiation induced senescence in mouse skin tissues. Remarkably, low dose of caffeine (Conclusion: The results reveal that caffeine protects skin from oxidative stress-induced senescence through activating the A2AR/SIRT3/AMPK-mediated autophagy. Our study not only demonstrated the beneficial effect of caffeine using both in vitro and in vivo models, but also systematically investigated the underlying molecular mechanisms. These discoveries implicate the potential of caffeine in the protection of skin disease.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY-NC).
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