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Mechanisms of Wound Healing and Disinfection in a Plasma Source for the Treatment of Corneal Infections

机译:血浆源伤口愈合和消毒机制,用于治疗角膜感染

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Cold atmospheric pressure plasmas provide the potential for effective treatment of infectious keratitis, a sight-threatening process with a worldwide occurrence of 2 million cases/yr. In microbial keratitis, bacteria, fungi, viruses, or small eukaryotes penetrate and proliferate in the cornea, causing inflammation and tissue ulceration. The requirement of clinical approaches to overcome antibiotic resistance and simultaneously foster tissue healing prompted us to develop a plasma source generated by ionizing helium flow for ophthalmologic applications. Using plasma, we reported significant reductions in load of bacteria, virus, and fungi that are frequently involved in infectious keratitis. Plasma exposure induced formation of reactive oxygen and nitrogen species in human cells, accounting for the already described biological effects. Actually, nontoxic levels of reactive species elicit intracellular signals and modulate hypoxia-related gatekeeper transcriptional factors such as nuclear factor-KB and hypoxia-inducible factor-la. Together, these data make cold atmospheric pressure plasma generated by ionizing helium flow a valid approach for the treatment of infectious keratitis.
机译:冷大气压等离子体提供有效治疗感染性角膜炎的潜力,威胁到威胁性的过程,具有200万个案例/年的全球发生。在微生物角膜炎,细菌,真菌,病毒或小型真核生物中穿透并在角膜中增殖,引起炎症和组织溃疡。临床方法要求克服抗生素抗性和同时培养组织愈合促使我们开发通过电离氦流量的血浆源,用于眼科应用。使用血浆,我们报告了经常参与传染性角膜炎的细菌,病毒和真菌的大量减少。血浆暴露诱导人细胞中反应性氧和氮物质的形成,占已经描述的生物效应。实际上,无毒性水平的反应性物种引发细胞内信号,调节缺氧相关的网守转录因子,如核因子-Kb和缺氧诱导因子-1。在一起,这些数据通过电离氦气流动产生冷大气压等离子体,这是治疗传染性角膜炎的有效方法。

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