4.7 Article

Exogenous Antioxidants Impact on UV-Induced Changes in Membrane Phospholipids and the Effectiveness of the Endocannabinoid System in Human Skin Cells

Journal

ANTIOXIDANTS
Volume 10, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/antiox10081260

Keywords

keratinocytes; skin fibroblasts; UV radiation; rutin; ascorbic acid; endocannabinoids; phospholipid peroxidation; phospholipid fatty acids; Zeta potential

Funding

  1. National Science Centre of Poland (NCN) [2017/25/N/NZ7/00863]

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The study found that rutin was more effective at protecting lipid membranes from UV-induced oxidation compared to ascorbic acid, despite the latter's stronger antioxidant properties. The combined use of both antioxidants showed the greatest cytoprotective effect, particularly in down-regulating inflammatory markers and increasing cell viability following radiation. The mixture of antioxidants provided stronger protection for membrane phospholipids in keratinocytes and the endocannabinoid system in fibroblasts.
Natural antioxidants effectively counteract changes caused by UV radiation in human skin cells. However, their action is limited due to their lipo/hydrophilicity. Therefore, the aim of this study was to analyze the mutual protective action of hydrophilic ascorbic acid and partially lipophilic rutin against UVA/UVB-induced changes in membranes phospholipid and endocannabinoid system in keratinocytes and fibroblasts. Obtained results clearly showed that, despite the stronger antioxidant properties of ascorbic acid, the lipid membranes were more effectively protected against UV-induced oxidation by rutin, including changes in phospholipid fatty acid levels, prevention against reactive aldehydes formation and endocannabinoids degradation. Ascorbic acid more strongly prevented UV-induced endocannabinoid receptors expression in fibroblasts, especially CB1. However, the combined action of used antioxidants resulted in the greatest cytoprotective effect, which was evident in the inflammatory marker TNF alpha down-regulation and increased cell viability following cell irradiation. The applied mixture of antioxidants showed a stronger protective in relation to membrane phospholipids in keratinocytes and in the endocannabinoid system in fibroblasts. In conclusion, it can be suggested that combined antioxidant capacities of ascorbic acid and rutin protects against lipid peroxidation but also decreases the UV-induced inflammation by direct interaction with the endocannabinoid system, thus increasing skin cell viability.

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