Intracellular oxidative stress induced by calcium influx initiates the activation of phagocytosis in keratinocytes accumulating at S-phase of the cell cycle after UVB irradiation
Autor: | Yuri Okano, Yuki Sato, Yushi Katsuyama, Hitoshi Masaki |
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Rok vydání: | 2021 |
Předmět: |
0301 basic medicine
Keratinocytes Ultraviolet Rays Phagocytosis chemistry.chemical_element Cellular homeostasis Dermatology Ascorbic Acid Calcium medicine.disease_cause Biochemistry Calcium in biology Antioxidants Cell Line 030207 dermatology & venereal diseases 03 medical and health sciences 0302 clinical medicine medicine Humans Molecular Biology Egtazic Acid Chelating Agents Melanins Melanosomes integumentary system Cell cycle Ascorbic acid Cell biology Oxidative Stress 030104 developmental biology chemistry S Phase Cell Cycle Checkpoints Reactive Oxygen Species Intracellular Oxidative stress DNA Damage |
Zdroj: | Journal of dermatological science. 103(1) |
ISSN: | 1873-569X |
Popis: | Background Phagocytosis is an essential process that maintains cellular homeostasis. In the epidermis, the phagocytosis of melanosomes into keratinocytes is important to protect their DNA against damage from ultraviolet B (UVB) radiation. Furthermore, it is considered that UVB activates the phagocytosis by keratinocytes but the detailed mechanism involved is not fully understood. Objective To clarify the mechanism of UVB-enhanced phagocytosis in keratinocytes, we investigated the relationship between the phagocytic ability of keratinocytes and the cell cycle stage of keratinocytes. Methods The phagocytic ability of keratinocytes was evaluated using the incorporation of fluorescent beads after exposure to UVB or oxidative stress. S-phase was evaluated by BrdU incorporation and immunostaining of cyclin D1. Intracellular calcium levels of keratinocytes were measured using the probe Fluo-4AM. Results The phagocytosis of fluorescent beads into keratinocytes was enhanced by UVB and also by oxidative stress. We found that keratinocytes exposed to UVB or oxidative stress were at S-phase of the cell cycle. Furthermore, keratinocytes synchronized to S-phase showed a higher phagocytic ability according to the increased intracellular ROS level. The UVB-enhanced phagocytosis and entrance into S-phase of keratinocytes was abolished by ascorbic acid, a typical antioxidant. Keratinocytes synchronized to S-phase and exposed to UVB or oxidative stress had increased levels of intracellular calcium and their enhanced phagocytic abilities were diminished by the calcium ion chelator BAPTA-AM. Conclusion Taken together, intracellular oxidative stress induced by intracellular calcium influx mediates the UVB-enhanced phagocytic ability of keratinocytes accumulating at S-phase of the cell cycle. |
Databáze: | OpenAIRE |
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