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等离子体医学:冷大气压等离子体在皮肤病学中的应用。

Plasma Medicine: Applications of Cold Atmospheric Pressure Plasma in Dermatology.

机构信息

Clinic and Policlinic for Dermatology and Venereology, University Medical Center Rostock, Rostock 18057, Germany.

ZIK Plasmatis, Leibniz Institute for Plasma Science and Technology (INP Greifswald), Greifswald 17489, Germany.

出版信息

Oxid Med Cell Longev. 2019 Sep 3;2019:3873928. doi: 10.1155/2019/3873928. eCollection 2019.

Abstract

The ability to produce cold plasma at atmospheric pressure conditions was the basis for the rapid growth of plasma-related application areas in biomedicine. Plasma comprises a multitude of active components such as charged particles, electric current, UV radiation, and reactive gas species which can act synergistically. Anti-itch, antimicrobial, anti-inflammatory, tissue-stimulating, blood flow-enhancing, and proapoptotic effects were demonstrated in and experiments, and until now, no resistance of pathogens against plasma treatment was observed. The combination of the different active agents and their broad range of positive effects on various diseases, especially easily accessible skin diseases, renders plasma quite attractive for applications in medicine. For medical applications, two different types of cold plasma appear suitable: indirect (plasma jet) and direct (dielectric barrier discharge-DBD) plasma sources. The DBD device PlasmaDerm® VU-2010 (CINOGY Technologies GmbH), the atmospheric pressure plasma jet (APPJ) kINPen® MED (INP Greifswald/neoplas tools GmbH), and the SteriPlas (Adtec Ltd., London, United Kingdom) are CE-certified as a medical product to treat chronic wounds in humans and showed efficacy and a good tolerability. Recently, the use of plasma in cancer research and oncology is of particular interest. Plasma has been shown to induce proapoptotic effects more efficiently in tumor cells compared with the benign counterparts, leads to cellular senescence, and-as shown reduces skin tumors. To this end, a world-wide first Leibniz professorship for plasmabiotechnology in dermatology has been introduced to establish a scientific network for the investigation of the efficacy and safety of cold atmospheric plasma in dermatooncology. Hence, plasma medicine especially in dermatology holds great promise.

摘要

能够在大气压条件下产生冷等离子体是等离子体相关应用在生物医学领域迅速发展的基础。等离子体包含多种活性成分,如带电粒子、电流、紫外线辐射和反应性气体物种,它们可以协同作用。在 和 实验中证明了止痒、抗菌、抗炎、刺激组织、增强血流和促凋亡作用,到目前为止,还没有观察到病原体对等离子体处理的耐药性。不同活性剂的组合及其对各种疾病的广泛积极影响,特别是易于治疗的皮肤病,使等离子体在医学应用中具有吸引力。对于医学应用,两种不同类型的冷等离子体似乎都很合适:间接(等离子体射流)和直接(电介质阻挡放电-DBD)等离子体源。DBD 设备 PlasmaDerm®VU-2010(CINOGY Technologies GmbH)、大气压等离子体射流(APPJ)kINPen®MED(INP Greifswald/neoplas tools GmbH)和 SteriPlas(Adtec Ltd.,伦敦,英国)已获得 CE 认证,可作为治疗人类慢性伤口的医疗产品,显示出疗效和良好的耐受性。最近,等离子体在癌症研究和肿瘤学中的应用引起了特别的兴趣。与良性细胞相比,等离子体在肿瘤细胞中诱导凋亡的效果更明显,导致细胞衰老,如所示,减少皮肤肿瘤。为此,德国莱布尼茨皮肤病学等离子体生物技术教授职位已在全球范围内设立,旨在建立一个科学网络,以研究冷大气压等离子体在皮肤肿瘤学中的疗效和安全性。因此,等离子体医学特别是在皮肤病学领域具有广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8782/6745145/ad4f6979359f/OMCL2019-3873928.001.jpg

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