AI Article Synopsis

  • trans-Chalcone is a plant flavonoid with limited research on its effects in inflammation, yet it shows promise in reducing skin inflammation and oxidative stress caused by UV exposure in mice.
  • The study found that trans-chalcone treatment decreased skin swelling, neutrophil activity, and a specific enzyme linked to inflammation, while also lowering levels of harmful cytokines.
  • Although trans-chalcone did not directly mitigate oxidative stress in lab tests, its overall anti-inflammatory properties may make it a valuable treatment option for UV-induced skin issues.

Article Abstract

trans-Chalcone is a plant flavonoid precursor, which lacks broad investigation on its biological activity in inflammatory processes. In the present study, anti-inflammatory and antioxidant mechanisms of systemic administration with trans-chalcone, a flavonoid precursor, on ultraviolet (UV) irradiation-induced skin inflammation and oxidative stress in hairless mice were investigated by the following parameters: skin edema, myeloperoxidase activity (neutrophil marker), matrix metalloproteinase-9 activity, reduced glutathione levels, catalase activity, lipid peroxidation products, superoxide anion production, gp (NADPH oxidase subunit) mRNA expression by quantitative PCR and cytokine production by ELISA. Systemic treatment with trans-chalcone inhibited skin inflammation by reducing skin edema and neutrophil recruitment, and also inhibited matrix metalloproteinase-9 activity. trans-Chalcone also inhibited oxidative stress, gp mRNA expression, and the production of a wide range of pro-inflammatory cytokines, while it did not affect anti-inflammatory cytokines induced by UV irradiation. However, trans-chalcone did not prevent oxidative stress in vitro, suggesting that its in vivo effect is more related to anti-inflammatory properties rather than a direct antioxidant effect. In conclusion, treatment with trans-chalcone inhibited UV-induced skin inflammation resulting in oxidative stress inhibition in vivo. Therefore, systemic supplementation with this compound may represent an important therapeutic approach in inflammatory skin diseases induced by UV irradiation.

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Source
http://dx.doi.org/10.1039/c6pp00442cDOI Listing

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