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光老化与自然老化特征:了解皮肤氧化。

Photoaging and chronological aging profile: Understanding oxidation of the skin.

机构信息

Laboratório de Fisiopatologia dos Radicais Livres, Universidade Estadual de Londrina (UEL), Rodovia Celso Garcia Cid, Londrina, PR, Brazil.

出版信息

J Photochem Photobiol B. 2011 May 3;103(2):93-7. doi: 10.1016/j.jphotobiol.2011.01.019. Epub 2011 Feb 1.

Abstract

The impact of chronological aging and photoaging on the skin is particularly concerning, especially when oxidative stress is involved. This article provides evidence of quantitative and qualitative differences in the oxidative stress generated by chronological aging and photoaging of the skin in HRS/J hairless mice. Analysis of the results revealed an increase in lipid peroxides as the skin gets older and in photoaged skin (10.086 ± 0.70 η MDA/mg and 14.303 ± 1.81 η MDA/mg protein, respectively), although protein oxidation was only verified in chronological aged skin (15.449 ± 0.99 η protein/mg protein). The difference between both skin types is the decay in the capacity of lipid membrane turnover revealed by the dislocation of older skin to the left in the chemiluminescence curve. Imbalance between antioxidant and oxidation processes was verified by the decrease in total antioxidant capacity of chronological and photoaged skins. Although superoxide dismutase remained unchanged, catalase increased in the 18 and 48-week-old skin groups and decreased in irradiated mice, demonstrating that neither enzyme is a good parameter to determine oxidative stress. The differences observed between chronological and photoaging skin represent a potential new approach to understanding the phenomenon of skin aging and a new target for therapeutic intervention.

摘要

皮肤的时相老化和光老化对皮肤的影响尤其令人关注,尤其是涉及氧化应激时。本文提供了定量和定性证据,证明 HRS/J 无毛小鼠皮肤的时相老化和光老化会产生氧化应激。对结果的分析表明,随着皮肤的老化和光老化,脂质过氧化物增加(分别为 10.086 ± 0.70 η MDA/mg 和 14.303 ± 1.81 η MDA/mg 蛋白),尽管只有在时相老化皮肤中才检测到蛋白质氧化(15.449 ± 0.99 η 蛋白/mg 蛋白)。两种皮肤类型之间的差异是脂质膜周转率的能力下降,表现为老化皮肤在化学发光曲线中向左移位。通过测定时相老化和光老化皮肤的总抗氧化能力下降,证实了抗氧化和氧化过程之间的失衡。尽管超氧化物歧化酶保持不变,但在 18 周和 48 周龄的皮肤组中,过氧化氢酶增加,而在受照射的小鼠中减少,这表明这两种酶都不是确定氧化应激的良好参数。在时相老化和光老化皮肤之间观察到的差异代表了一种理解皮肤老化现象的潜在新方法,也是治疗干预的新靶点。

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