Int J Med Sci 2024; 21(5):937-948. doi:10.7150/ijms.93034 This issue Cite

Research Paper

Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter

Mei Jing Piao1, Kyoung Ah Kang1, Pincha Devage Sameera Madushan Fernando1, Herath Mudiyanselage Udari Lakmini Herath1, Young Sang Koh1, Hee Kyoung Kang1, Yung Hyun Choi2, Jin Won Hyun1✉

1. College of Medicine, and Jeju Research Center for Natural Medicine, Jeju National University, Jeju 63243, Republic of Korea.
2. College of Oriental Medicine, Dongeui University, Busan 47340, Republic of Korea.

Citation:
Piao MJ, Kang KA, Fernando PDSM, Herath HMUL, Koh YS, Kang HK, Choi YH, Hyun JW. Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter. Int J Med Sci 2024; 21(5):937-948. doi:10.7150/ijms.93034. https://www.medsci.org/v21p0937.htm
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Abstract

Graphic abstract

The skin is directly exposed to atmospheric pollutants, especially particulate matter 2.5 (PM2.5) in the air, which poses significant harm to skin health. However, limited research has been performed to identify molecules that can confer resistance to such substances. Herein, we analyzed the effect of fermented sea tangle (FST) extract on PM2.5-induced human HaCaT keratinocyte damage. Results showed that FST extract, at concentrations less than 800 μg/mL, exhibited non-significant toxicity to cells and concentration-dependent inhibition of PM2.5-induced reactive oxygen species (ROS) production. PM2.5 induced oxidative stress by stimulating ROS, resulting in DNA damage, lipid peroxidation, and protein carbonylation, which were inhibited by the FST extract. FST extract significantly suppressed the increase in calcium level and apoptosis caused by PM2.5 treatment and significantly restored the reduced cell viability. Mitochondrial membrane depolarization occurred due to PM2.5 treatment, however, FST extract recovered mitochondrial membrane polarization. PM2.5 inhibited the expression of the anti-apoptotic protein Bcl-2, and induced the expression of pro-apoptotic proteins Bax and Bim, the apoptosis initiator caspase-9, as well as the executor caspase-3, however, FST extract effectively protected the changes in the levels of these proteins caused by PM2.5. Interestingly, pan-caspase inhibitor Z-VAD-FMK treatment enhanced the anti-apoptotic effect of FST extract in PM2.5-treated cells. Our results indicate that FST extract prevents PM2.5-induced cell damage via inhibition of mitochondria-mediated apoptosis in human keratinocytes. Accordingly, FST extract could be included in skin care products to protect cells against the harmful effects of PM2.5.

Keywords: fermented sea tangle extract, particulate matter 2.5, oxidative stress, apoptosis


Citation styles

APA
Piao, M.J., Kang, K.A., Fernando, P.D.S.M., Herath, H.M.U.L., Koh, Y.S., Kang, H.K., Choi, Y.H., Hyun, J.W. (2024). Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter. International Journal of Medical Sciences, 21(5), 937-948. https://doi.org/10.7150/ijms.93034.

ACS
Piao, M.J.; Kang, K.A.; Fernando, P.D.S.M.; Herath, H.M.U.L.; Koh, Y.S.; Kang, H.K.; Choi, Y.H.; Hyun, J.W. Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter. Int. J. Med. Sci. 2024, 21 (5), 937-948. DOI: 10.7150/ijms.93034.

NLM
Piao MJ, Kang KA, Fernando PDSM, Herath HMUL, Koh YS, Kang HK, Choi YH, Hyun JW. Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter. Int J Med Sci 2024; 21(5):937-948. doi:10.7150/ijms.93034. https://www.medsci.org/v21p0937.htm

CSE
Piao MJ, Kang KA, Fernando PDSM, Herath HMUL, Koh YS, Kang HK, Choi YH, Hyun JW. 2024. Protective Effect of Fermented Sea Tangle Extract on Skin Cell Damage Caused by Particulate Matter. Int J Med Sci. 21(5):937-948.

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