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Oligomeric Procyanidin Nanoliposomes Prevent Melanogenesis and UV Radiation-Induced Skin Epithelial Cell (HFF-1) Damage

机译:寡聚花青素纳米脂质体可防止黑色素生成和紫外线辐射引起的皮肤上皮细胞(HFF-1)损伤

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摘要

The potential protective effect of nanoliposomes loaded with lotus seedpod oligomeric procyanidin (LSOPC) against melanogenesis and skin damaging was investigated. Fluorescence spectroscopy showed that, after encapsulation, the LSOPC-nanoliposomes still possessed strong inhibitory effects against melanogenesis, reducing the activity of both monophenolase and diphenolase. Molecular docking indicated that LSOPC could generate intense interactive configuration with tyrosinase through arene–H, arene–arene, and hydrophobic interaction. An ultraviolet radiated cell-culture model (human foreskin fibroblast cell (HFF-1)) was used to determine the protective effects of the LSOPC-nanoliposomes against skin aging and damage. Results showed that LSOPC-nanoliposomes exerted the highest protective effects against both ultraviolet B (UVB) and ultraviolet A (UVA) irradiation groups compared with non-encapsulated LSOPC and a control (vitamin C). Superoxide dismutase (SOD) and malonaldehyde (MDA) assays demonstrated the protection mechanism may be related to the anti-photooxidation activity of the procyanidin. Furthermore, a hydroxyproline assay suggested that the LSOPC-nanoliposomes had a strong protective effect against collagen degradation and/or synthesis after UVA irradiation.
机译:研究了荷花种子低聚原花青素(LSOPC)负载的纳米脂质体对黑色素生成和皮肤损伤的潜在保护作用。荧光光谱显示,包封后,LSOPC-纳米脂质体仍然具有强大的抑制黑色素生成的作用,从而降低了单酚酶和双酚酶的活性。分子对接表明,LSOPC可以通过芳烃-H,芳烃-芳烃和疏水相互作用与酪氨酸酶产生强烈的相互作用。使用紫外线辐射的细胞培养模型(人包皮成纤维细胞(HFF-1))确定LSOPC-纳米脂质体对皮肤衰老和损伤的保护作用。结果表明,与未包封的LSOPC和对照(维生素C)相比,LSOPC-纳米脂质体对紫外线B(UVB)和紫外线A(UVA)照射组均表现出最高的保护作用。超氧化物歧化酶(SOD)和丙二醛(MDA)分析表明,这种保护机制可能与原花青素的抗光氧化活性有关。此外,羟脯氨酸测定表明,LSOPC-纳米脂质体对UVA照射后的胶原蛋白降解和/或合成具有很强的保护作用。

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