4.0 Article

Pretreatment of Ferulic Acid Protects Human Dermal Fibroblasts against Ultraviolet A Irradiation

Journal

ANNALS OF DERMATOLOGY
Volume 28, Issue 6, Pages 740-748

Publisher

KOREAN DERMATOLOGICAL ASSOC
DOI: 10.5021/ad.2016.28.6.740

Keywords

Cell aging; DNA repair; Ferulic acid; Reactive oxygen species; Ultraviolet rays

Categories

Funding

  1. Ministry of Science, ICT and Future Planning of Republic of Korea [2013R1A1A, 1012205, 20110028646]

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Background: Approximately 90%similar to 99% of ultraviolet A (UVA) ray reaches the Earth's surface. The deeply penetrating UVA rays induce the formation of reactive oxygen species (ROS), which results in oxidative stress such as photo products, senescence, and cell death. Thus, UVA is considered a primary factor that promotes skin aging. Objective: Researchers investigated whether pretreatment with ferulic acid protects human dermal fibroblasts (HDFs) against UVA-induced cell damages. Methods: HDF proliferation was analyzed using the water-soluble tetrazolium salt assay. Cell cycle distribution and intracellular ROS levels were assessed by flow cytometric analysis. Senescence was evaluated using a senescence-associated beta -galactosidase assay, while Gadd45 alpha promoter activity was analyzed through a luciferase assay. The expression levels of superoxide dismutase 1 (SOD1), catalase (CAT), xeroderma pigmentosum complementation group A and C, matrix metalloproteinase 1 and 3, as well as p21 and p16 were measured using quantitative real-time polymerase chain reaction. Results: Inhibition of proliferation and cell cycle arrest were detected in cells that were irradiated with UVA only. Pretreatment with ferulic acid significantly increased the proliferation and cell cycle progression in HDFs. Moreover, ferulic acid pretreatment produced antioxidant effects such as reduced DCF intensity, and affected SOD1 and CAT mRNA expression. These effects were also demonstrated in the analysis of cell senescence, promoter activity, expression of senescent markers, and DNA repair. Conclusion: These results demonstrate that ferulic acid exerts protective effects on UVA-induced cell damages via anti-oxidant and stress-inducible cellular mechanisms in HDFs.

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