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Efficacy of marigold extract-loaded formulations against UV-induced oxidative stress. | LitMetric

AI Article Synopsis

  • - The study explored how marigold extract (Calendula officinalis) can prevent skin damage caused by UVB rays through various topical formulations.
  • - Among the formulations tested, a gel formulation (F3) showed the best ability to deliver the marigold extract effectively to the skin, maintaining stable levels of important antioxidants.
  • - F3 not only reduced visible skin damage from UVB exposure but also suggested potential benefits in improving collagen production in deeper skin layers.

Article Abstract

The present study investigated the potential use of topical formulations containing marigold extract (ME) (Calendula officinalis extract) against ultraviolet (UV)B irradiation-induced skin damage. The physical and functional stabilities, as well as the skin penetration capacity, of the different topical formulations developed were evaluated. In addition, the in vivo capacity to prevent/treat the UVB irradiation-induced skin damage, in hairless mice, of the formulation with better skin penetration capacity was investigated. All of the formulations were physically and functionally stable. The gel formulation [Formulation 3 (F3)] was the most effective for the topical delivery of ME, which was detected as 0.21 μg/cm(2) of narcissin and as 0.07 μg/cm(2) of the rutin in the viable epidermis. This formulation was able to maintain glutathione reduced levels close to those of nonirradiated animals, but did not affect the gelatinase-9 and myeloperoxidase activities increased by exposure to UVB irradiation. In addition, F3 reduced the histological skin changes induced by UVB irradiation that appear as modifications of collagen fibrils. Therefore, the photoprotective effect in hairless mice achieved with the topical application of ME in gel formulation is most likely associated with a possible improvement in the collagen synthesis in the subepidermal connective tissue.

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Source
http://dx.doi.org/10.1002/jps.22438DOI Listing

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