4.7 Article

Photoprotective Effects of a Hyperoside-Enriched Fraction Prepared from Houttuynia cordata Thunb. on Ultraviolet B-Induced Skin Aging in Human Fibroblasts through the MAPK Signaling Pathway

Journal

PLANTS-BASEL
Volume 10, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/plants10122628

Keywords

skin aging; ultraviolet-B; Houttuynia cordata; hyperoside-enriched fraction; flavonoid; photoprotective; natural cosmetics

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Funding

  1. TSRI [64/003]
  2. Chiang Mai University
  3. Center for Research and Development of Natural Products for Health [14/2564]

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The study found that the hyperoside-enriched fraction from Houttuynia cordata has significant photoprotective effects against UVB-induced skin aging by inhibiting intracellular ROS production, inflammatory cytokine secretions, and promoting collagen synthesis. The active compounds identified in the H. cordata extract play a key role in regulating the MAPK signaling pathway to prevent UVB-induced skin aging. These findings suggest that H. cordata extract could be a potential ingredient in pharmaceutical or cosmetic formulations to combat skin aging.
Ultraviolet-B (UVB) irradiation causes skin damage via deleterious effects including oxidative stress, inflammation, and collagen degradation. The photoprotective effects of a hyperoside-enriched fraction obtained from Houttuynia cordata Thunb. (H. cordata) on the attenuation of UVB-induced skin aging in human fibroblasts were investigated. The solvent-partition technique was used to establish the hyperoside-enriched fraction of H. cordata (HcEA). The active compounds identified in the H. cordata extracts were hyperoside, quercitrin, chlorogenic acid, and rutin. With regard to the photoprotective effects of H. cordata on UVB-irradiated dermal fibroblasts, HcEA and hyperoside inhibited intracellular ROS production and inflammatory cytokine secretions (IL-6 and IL-8), while increasing collagen type I synthesis along with downregulating MMP-1 gene and protein expressions. Mechanistically, the hyperoside-enriched fraction obtained from H. cordata inhibited UVB-irradiated skin aging through regulation of the MAPK signaling pathway by attenuating the activation of JNK/ERK/c-Jun in human dermal fibroblasts. The hyperoside-enriched fraction of H. cordata exerted potent anti-skin aging properties against UVB exposure. The findings of this study can be applied in the cosmetics industry, as H. cordata extract can potentially be used in pharmaceutical or cosmetic formulations as a photoprotective or anti-skin aging agent.

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