Graduate School of Agriculture, Kyoto University, Kyoto, Japan.
Department of Biomedical Sciences, Ritsumeikan University, Kyoto, Japan.
J Sci Food Agric. 2025 Jan 15;105(1):453-464. doi: 10.1002/jsfa.13842. Epub 2024 Aug 28.
Repeated exposure to ultraviolet A (UVA) irradiation, which can penetrate the epidermis and reach the dermis, is one of the major causes of skin photoaging. Photoaged skin is characterized clinically by generalized wrinkling, a dry and loose appearance, and seborrheic keratoses, along with skin barrier dysfunction. Fucoxanthin, a xanthophyll carotenoid with a specific allenic bond and 5,6-monoepoxide in its structure, has been found to serve various functions as a food supplement. In the present study, the protective effects of orally administered fucoxanthin at relatively low concentrations (0.001% and 0.01%) against UVA induced photoaging were evaluated in vivo using hairless mice.
Oral supplementation of 0.001% fucoxanthin was sufficient for its metabolites to accumulate in the skin, thereby inhibiting pathological changes induced by UVA irradiation, including impaired skin barrier function and accelerated wrinkle formation. Analysis of gene expression revealed that dietary fucoxanthin exerted antiphotoaging effects, possibly by modulating natural moisturizing factor (NMF) synthesis, desquamation, and ceramide composition in the epidermis, and by inhibiting the UVA induced degradation of collagen fibers and inflammation in the dermis.
Taken together, our data indicate the potential application of dietary fucoxanthin as a novel ingredient in nutricosmetics for skin care against photoaging. © 2024 Society of Chemical Industry.
反复暴露于能穿透表皮到达真皮的紫外线 A(UVA)辐射是皮肤光老化的主要原因之一。光老化皮肤临床上表现为普遍的皱纹、干燥和松弛外观以及脂溢性角化病,同时伴有皮肤屏障功能障碍。岩藻黄质是一种叶黄素类胡萝卜素,其结构中具有特定的烯丙基键和 5,6-单环氧,已被发现具有多种作为食品补充剂的功能。在本研究中,通过无毛小鼠体内实验评估了相对低浓度(0.001%和 0.01%)口服岩藻黄质对 UVA 诱导的光老化的保护作用。
口服补充 0.001%的岩藻黄质足以使其代谢物在皮肤中积累,从而抑制 UVA 照射引起的病理性变化,包括皮肤屏障功能受损和皱纹形成加速。基因表达分析表明,饮食中的岩藻黄质具有抗光老化作用,可能通过调节表皮中的天然保湿因子(NMF)合成、脱屑和神经酰胺组成,以及抑制 UVA 诱导的胶原纤维降解和真皮炎症来发挥作用。
综上所述,我们的数据表明,饮食中的岩藻黄质作为一种新型成分在用于皮肤光老化护理的营养化妆品中的潜在应用。 © 2024 化学工业协会。