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首页> 外文期刊>American Journal of Physiology >Caveolin-1/PTRF upregula-tion constitutes a mechanism for mediating p53-induced cellular senescence: implications for evidence-based therapy of delayed wound healing in diabetes.
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Caveolin-1/PTRF upregula-tion constitutes a mechanism for mediating p53-induced cellular senescence: implications for evidence-based therapy of delayed wound healing in diabetes.

机译:Caveolin-1 / PTRF的上调构成了介导p53诱导的细胞衰老的机制:对糖尿病延迟伤口愈合的循证疗法的意义。

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A heightened state of oxidative stress and senescence of fibroblasts constitute potential therapeutic targets in nonhealing diabetic wounds. Here, we studied the underlying mechanism mediating diabetes-induced cellular senescence using in vitro cultured dermal fibroblasts and in vivo circular wounds. Our results demonstrated that the total antioxidant capacity and mRNA levels of thioredoxinreductase and glucose-6-phosphate dehydrogenase as well as the ratio of NADPH/NADP were decreased markedly in fibroblasts from patients with type 2 diabetes (DFs). Consistent with this shift in favor of excessive reactive oxygen species, DFs also displayed a significant increase in senescence-associated (J-galactosidase activity and phospho-7-histone H2AX (pH2AX) level. Moreover, the ability of PDGF to promote cell proliferation/migration and regulate the phosphorylation-dependent activation of Akt and ERK1/2 appears to be attenuated as a function of diabetes. Mechanistically, we found that diabetes-induced oxidative stress upregulated caveolin-1 (Cav-1) and PTRF expression, which in turn sequestered Mdm2 away from p53. This process resulted in the activation of a p53/p21-dependent pathway and the induction of premature senescence in DFs. Most of the aforementioned oxidative stress and senescence-based features observed in DFs were recapitulated in a 10-day-old diabetic wound. Intriguingly, we confirmed that the targeted depletion of Cav-1 or PTRF using siRNA-or Vivo-Morpholino antisense-based gene therapy markedly inhibited diabetes/oxidative stress-induced premature senescence and also accelerated tissue repair in this disease state. Overall, our data illuminate Cav-1/PTRF-1 as a key player of a novel signaling pathway that may link a heightened state of oxidative stress to cellular senescence and impaired wound healing in diabetes.
机译:氧化应激状态的升高和成纤维细胞的衰老构成了糖尿病性伤口无法愈合的潜在治疗靶点。在这里,我们研究了使用体外培养的真皮成纤维细胞和体内圆形伤口介导糖尿病诱导的细胞衰老的潜在机制。我们的结果表明,在2型糖尿病(DFs)患者的成纤维细胞中,总的抗氧化能力和硫氧还蛋白还原酶和6磷酸葡萄糖脱氢酶的mRNA水平以及NADPH / NADP的比率均明显降低。与有利于活性氧过多的这一转变相一致,DFs还显示出与衰老相关的(J-半乳糖苷酶活性和-7磷酸组蛋白H2AX(pH2AX))水平的显着增加。此外,PDGF促进细胞增殖/迁移和调节Akt和ERK1 / 2的磷酸化依赖性激活似乎随着糖尿病的作用而减弱。从机理上讲,我们发现糖尿病引起的氧化应激上调了Caveolin-1(Cav-1)和PTRF的表达,从而反过来将Mdm2隔离在p53之外,这一过程导致DFs激活了p53 / p21依赖性途径,并诱导了过早衰老,在DFs中观察到的大多数上述氧化应激和衰老特征在10天之内得以概括。有趣的是,我们证实了使用基于siRNA或Vivo-Morpholino反义的基因疗法靶向清除Cav-1或PTRF可以显着抑制糖尿病/氧化性st病原体诱导的过早衰老,并且在这种疾病状态下还加速了组织修复。总体而言,我们的数据表明Cav-1 / PTRF-1是新型信号通路的关键参与者,该通路可能将氧化应激的升高状态与细胞衰老和糖尿病的伤口愈合受损联系在一起。

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