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Nrf2 signaling and inflammation are key events in physical plasma-spurred wound healing

机译:Nrf2信号传导和炎症是物理血浆刺激伤口愈合的关键事件

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摘要

Wound healing is strongly associated with the presence of a balanced content of reactive species in which oxygen-dependent, redox-sensitive signaling represents an essential step in the healing cascade. Numerous studies have demonstrated that cold physical plasma supports wound healing due to its ability to deliver a beneficial mixture of reactive species directly to the cells.>Methods: We described a preclinical proof-of-principle-concept of cold plasma use in a dermal, full-thickness wound model in immunocompetent SKH1 mice. Quantitative PCR, Western blot analysis, immunohistochemistry and immunofluorescence were perfomed to evaluate the expression and cellular translocation of essential targets of Nrf2 and p53 signaling as well as immunomodulatory and angiogenetic factors. Apoptosis and proliferation were detected using TUNEL assay and Ki67 staining, respectively. Cytokine levels in serum were measured using bead-based multiplex cytokine analysis. Epidermal keratinocytes and dermal fibroblasts were isolated from mouse skin to perform functional knockdown experiments. Intravital fluorescence analysis was used to illustrate and quantified microvascular features.>Results: Plasma exerted significant effects on wound healing in mice, including the promotion of granulation and reepithelialization as a consequence of the migration of skin cells, the balance of antioxidant and inflammatory response, and the early induction of macrophage and neutrophil recruitment to the wound sites. Moreover, through an early and local plasma-induced p53 inhibition with a concomitant stimulation of proliferation, the upregulation of angiogenetic factors, and an increased outgrowth of new vessels, our findings explain why dermal skin repair is accelerated. The cellular redox homeostasis was maintained and cells were defended from damage by a strong modulation of the nuclear E2-related factor (Nrf2) pathway and redox-sensitive p53 signaling.>Conclusions: Although acute wound healing is non-problematic, the pathways highlighted that mainly the activation of Nrf2 signaling is a promising strategy for the clinical use of cold plasma in chronic wound healing.
机译:伤口愈合与反应性物质平衡存在密切相关,其中氧依赖性氧化还原敏感信号传导代表愈合级联中必不可少的步骤。大量研究表明,冷物理血浆由于其能够将有益的反应性物质直接传递到细胞中而支持伤口愈合。>方法:我们描述了冷的临床前原理概念证明在具有免疫功能的SKH1小鼠的真皮全层伤口模型中使用血浆。进行了定量PCR,蛋白质印迹分析,免疫组化和免疫荧光分析,以评估Nrf2和p53信号转导的主要靶标以及免疫调节和血管生成因子的表达和细胞易位。分别使用TUNEL测定和Ki67染色检测细胞凋亡和增殖。使用基于珠的多重细胞因子分析测量血清中的细胞因子水平。从小鼠皮肤中分离出表皮角质形成细胞和真皮成纤维细胞,进行功能敲低实验。 >结果:血浆对小鼠伤口愈合具有显着影响,包括由于皮肤细胞迁移而促进的肉芽形成和再上皮形成,平衡抗氧化剂和炎症反应,以及巨噬细胞和中性粒细胞募集到伤口部位的早期诱导。此外,通过早期和局部血浆诱导的p53抑制,并伴随着增殖刺激,血管生成因子的上调和新血管的增生,我们的发现解释了为什么皮肤皮肤修复得到加速。通过强烈调节核E2相关因子(Nrf2)通路和氧化还原敏感的p53信号传导来维持细胞的氧化还原稳态,并保护细胞免受损伤。>结论:尽管急性伤口愈合不是有问题的是,这些途径突出表明,主要是Nrf2信号的激活是在慢性伤口愈合中临床使用冷血浆的一种有前途的策略。

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