含有番茄红素和地塞米松的外用凝胶抗紫外线致小鼠光老化的筛选

Harshit Shah , Shruti Rawal Mahajan
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引用次数: 5

摘要

太阳不断地发出紫外线,使人体产生一系列的病理变化,长此以往,最终导致光老化和皮肤癌。反复暴露在紫外线下会增加氧化应激、亚硝化应激和炎症介质,从而导致p38、MMPs的激活,并导致光老化。番茄红素是一种抗氧化剂,极低剂量的地塞米松具有抗炎作用。实验动物在紫外线照射后分别给予番茄红素凝胶、地塞米松凝胶和地塞米松-番茄红素凝胶复合剂。实验结束后,通过形态学、生化及组织病理学指标对治疗效果进行评价。与紫外线照射组和地塞米松治疗组相比,接受番茄红素和标准治疗组的动物皱纹较少。番茄红素处理使TBARS水平从51.2±2.417%降低至23.593±3.945%,且随慢性紫外线照射而升高。胶原、过氧化氢酶和GSH水平分别从56.12±2.626%升高至20.56±2.029%,64.59±1.743%升高至19.507±4.997%,48.780±1.682%升高至21.927±7.248%。组织病理学研究和表皮厚度参数也表明番茄红素对紫外线辐射有保护作用。在地塞米松治疗的情况下,无论是单独使用还是联合使用都没有显著的疗效(P<0.001)的保护作用,这可能是由于其在小鼠体内产生氧化应激的固有特性。值得注意的是,番茄红素具有抗氧化作用,可以防止光老化。
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Screening of topical gel containing lycopene and dexamethasone against UV radiation induced photoaging in mice

Sun continuously emits UV radiation which produces series of pathological changes in the body, in long term, this ultimately results in photoaging and skin cancer on long term. Repeated UV exposure increases oxidative stress, nitrosative stress and inflammatory mediators which lead to activation of p38, MMPs and results in photoaging. Lycopene is an antioxidant and very low dose of dexamethasone provides anti-inflammatory effect. Animals were applied with lycopene gel, dexamethasone gel and combination of dexamethasone and lycopene gel after exposing to UV radiation. After experimentation period effectiveness, of treatment were evaluated by morphological, biochemical and histopathological parameters. The animals which had received lycopene and standard treatment showed less wrinkles in comparison to UV irradiated and dexamethasone treated group. Lycopene treatment decreased the TBARS level from 51.2 ± 2.417% to 23.593 ± 3.945%, increased by chronic UV radiation. Similarly, collagen, catalase and GSH level was increased from 56.12 ± 2.626% damage to 20.56 ± 2.029%, 64.59 ± 1.743% damage to 19.507 ± 4.997% and 48.780 ± 1.682% reduction to 21.927 ± 7.248%. Histopathological study and epidermal thickness parameter also revealed that lycopene provide protection against UV radiation. In case of dexamethasone treatment, either alone or in combination did not provide significant (P< 0.001) protection, which may be due to its inherent property to generate oxidative stress in mice. It is noteworthy to report that lycopene provide protection against photoaging by virtue of antioxidant property.

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