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首页> 外文期刊>The Journal of investigative dermatology. >Angiopoietin-1 reduces H(2)O(2)-induced increases in reactive oxygen species and oxidative damage to skin cells.
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Angiopoietin-1 reduces H(2)O(2)-induced increases in reactive oxygen species and oxidative damage to skin cells.

机译:Angiopoietin-1减少H(2)O(2)诱导的活性氧种类的增加和对皮肤细胞的氧化损伤。

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摘要

UV light-based damage to skin cells can cause photoaging and skin cancer. A major cause of UV light-induced damage to skin is increased free radicals, such as superoxides. Increased superoxides can cause oxidative and nitrative damage to cell components. Thus, agents that counteract these damages may have therapeutic value. Herein, we show that angiopoietin-1 (ang1) prevented and blocked H(2)O(2)-induced increases in superoxides in human spontaneously immortalized keratinocyte line, HaCaT, and primary melanocytes (HeMn). Ang1 prevented H(2)O(2)-induced increases in damage to DNA (8-hydroxy-2'-deoxyguanosine) and proteins (nitrotyrosinylation). Ang1 promoted skin cell metabolism/viability, adhesion, and akt and MAPK(p42/44) activations. Using multi-gene transcriptional profiling, we found that skin cells express integrin subunits {(beta(1), beta(4-6), beta(8), alpha(v), alpha(2), alpha(3), alpha(6) (HaCaT)), (beta(1), beta(3), beta(5), beta(8), alpha(v), alpha(3) (HeMn))} and lack tie2 receptor mRNA. Integrin antibodies (alpha(v), beta(1)) disrupted skin cell adhesion to ang1 and ang1-induced decreases in superoxides. Our findings show that ang1 blocks free radical damage to skin cells and may be clinically useful to prevent and/or reduce photoaging and skin cancer.
机译:基于紫外线的皮肤细胞损伤会导致光老化和皮肤癌。紫外线引起的皮肤损伤的主要原因是自由基增加,例如超氧化物。超氧化物增加会导致细胞成分的氧化和硝化损伤。因此,抵消这些损害的药物可能具有治疗价值。在这里,我们显示血管生成素1(ang1)预防和阻止H(2)O(2)诱导的人类自发永生化角质形成细胞系,HaCaT和原代黑素细胞(HeMn)中的超氧化物的增加。 Ang1防止H(2)O(2)诱导的DNA(8-羟基-2'-脱氧鸟苷)和蛋白质(硝基酪氨酸化)的损害增加。 Ang1促进皮肤细胞代谢/生存能力,粘附力以及akt和MAPK(p42 / 44)活化。使用多基因转录分析,我们发现皮肤细胞表达整联蛋白亚基{(beta(1),beta(4-6),beta(8),alpha(v),alpha(2),alpha(3),alpha (6)(HaCaT)),(beta(1),beta(3),beta(5),beta(8),alpha(v),alpha(3)(HeMn))}且缺少tie2受体mRNA。整联蛋白抗体(alpha(v),beta(1))破坏皮肤细胞对ang1的粘附,而ang1诱导的超氧化物减少。我们的发现表明ang1可以阻止自由基对皮肤细胞的损害,并且在临床上可用于预防和/或减少光老化和皮肤癌。

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