Biomedical Center Martin, Jessenius Faculty of Medicine in Martin, Comenius University in Bratislava, 036 01 Martin, Slovakia.
Int J Mol Sci. 2020 Apr 22;21(8):2932. doi: 10.3390/ijms21082932.
Cold atmospheric plasma use in clinical studies is mainly limited to the treatment of chronic wounds, but its application in a wide range of medical fields is now the goal of many analyses. It is therefore likely that its application spectrum will be expanded in the future. Cold atmospheric plasma has been shown to reduce microbial load without any known significant negative effects on healthy tissues, and this should enhance its possible application to any microbial infection site. It has also been shown to have anti-tumour effects. In addition, it acts proliferatively on stem cells and other cultivated cells, and the highly increased nitric oxide levels have a very important effect on this proliferation. Cold atmospheric plasma use may also have a beneficial effect on immunotherapy in cancer patients. Finally, it is possible that the use of plasma devices will not remain limited to surface structures, because current endeavours to develop sufficiently miniature microplasma devices could very likely lead to its application in subcutaneous and internal structures. This study summarises the available literature on cold plasma action mechanisms and analyses of its current in vivo and in vitro use, primarily in the fields of regenerative and dental medicine and oncology.
低温常压等离子体在临床研究中的应用主要局限于慢性创面的治疗,但目前许多分析的目标是将其应用扩展到更广泛的医学领域。因此,未来其应用范围很可能会扩大。低温常压等离子体已被证明可以在不显著影响健康组织的情况下降低微生物负荷,这应该会增强其在任何微生物感染部位的应用潜力。它还具有抗肿瘤作用。此外,它对干细胞和其他培养细胞具有增殖作用,而高度增加的一氧化氮水平对这种增殖有非常重要的影响。低温常压等离子体的使用也可能对癌症患者的免疫治疗产生有益影响。最后,使用等离子体设备可能不再局限于表面结构,因为目前开发足够小的微等离子体设备的努力很可能会导致其在皮下和内部结构中的应用。本研究总结了低温等离子体作用机制的现有文献,并分析了其目前在体内和体外的应用,主要集中在再生医学、牙科医学和肿瘤学领域。