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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Tissue-specific role of Nrf2 in the treatment of diabetic foot ulcers during hyperbaric oxygen therapy
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Tissue-specific role of Nrf2 in the treatment of diabetic foot ulcers during hyperbaric oxygen therapy

机译:NRF2在高压氧治疗期间NRF2治疗糖尿病足溃疡的组织特异性作用

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摘要

Hyperbaric oxygen (HBO) therapy is proven to be very successful for diabetic foot ulcer (DFU) treatment due to its antimicrobial effect, increased angiogenesis and enhanced collagen synthesis. The molecular mechanism underlying HBO therapy particularly the involvement of Nrf2 in the wound healing process was investigated in the present study. In addition, we have studied the levels of angiogenic markers in ulcer tissues and their correlation with Nrf2 during HBO therapy compared with standard therapy (Non-HBO) for DFU. A total of 32 Patients were recruited and randomized to standard wound care procedure alone (n= 17) or HBO therapy in combination with standard wound care procedure (n=15) for 20 days. Our results showed that the tissue levels of Nrf2 along with its downstream targets were significantly increased in patients who underwent HBO therapy when compared to Non-HBO therapy. Further, HBO therapy induced angiogenesis as assessed by increased levels of angiogenesis markers such as EGF, VEGF, PDGF, FGF-2 and CXCL10 in the tissue samples. The expressions of eNOS and nitrite concentrations were also significantly increased in HBO therapy when compared to Non-HBO therapy subjects. Moreover, HBO therapy sensitises the macrophages to release FGF-2 and EGF thereby promotes angiogenesis. Further, it increased the levels of neutrophil attractant CXCL-8 thereby promotes the release of chemokine CCL2, a well-known mediator of neovascularization. The Pearson correlation showed that Nrf2 has a positive correlation with EGF, VEGF and PDGF. In conclusion, the findings of the present study suggest that HBO therapy promotes wound healing by increasing oxygen supply and distribution to damaged tissues, stimulating angiogenesis, decreasing inflammation, and increasing the nitrite levels. Increased levels of Nrf2 transiently regulate the expression of angiogenic genes in wound biopsies, which may result in accelerated healing of chronic wounds.
机译:由于其抗微生物效应,血管生成增加和增强的胶原合成,证明具有高压氧(HBO)治疗对于糖尿病足溃疡(DFU)处理非常成功。 HBO治疗的分子机制特别是NRF2在本研究中研究了NRF2在伤口愈合过程中。此外,我们研究了与DFU的标准治疗(非HBO)相比,在HBO治疗中研究了溃疡组织中血管生成标志物的水平及其与NRF2的相关性。招募了32名患者,并单独将32名患者(n = 17)或HBO疗法组合在于标准伤口护理程序(n = 15)20天。我们的研究结果表明,与非HBO治疗相比,在HBO治疗的患者中,NRF2的组织水平随着其下游靶点而显着增加。此外,HBO治疗诱导血管生成,如通过组织样品中的血管生成标志物(例如EGF,VEGF,PDGF,FGF-2和CXCL10)的增加的血管生成标记水平评估。与非HBO治疗受试者相比,HBO疗法的eNOS和亚硝酸盐浓度的表达也显着增加。此外,HBO治疗使巨噬细胞释放FGF-2和EGF,从而促进血管生成。此外,它增加了中性粒细胞引诱剂CXCL-8的水平,从而促进了趋化因子CCL2的释放,是新血管形成的众所周知的介质。 Pearson相关表明NRF2与EGF,VEGF和PDGF具有正相关。总之,本研究的发现表明,通过增加氧气供应和分布,促进血管生成,降低炎症和增加亚硝酸盐水平,HBO治疗通过增加氧气供应和分布促进伤口愈合。增加的NRF2水平瞬时调节伤口活组织检查中血管生成基因的表达,这可能导致慢性伤口的加速愈合。

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