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用于生物医学的冷氩大气等离子体:生物学效应、应用及前景

Cold Argon Athmospheric Plasma for Biomedicine: Biological Effects, Applications and Possibilities.

作者信息

Martusevich Andrew K, Surovegina Alexandra V, Bocharin Ivan V, Nazarov Vladimir V, Minenko Inessa A, Artamonov Mikhail Yu

机构信息

Laboratory of Translational Free Radical Biomedicine, Sechenov University, 119991 Moscow, Russia.

MJA Research and Development, Inc., East Stroudsburg, PA 18301, USA.

出版信息

Antioxidants (Basel). 2022 Jun 27;11(7):1262. doi: 10.3390/antiox11071262.

Abstract

Currently, plasma medicine is a synthetic direction that unites the efforts of specialists of various profiles. For the successful formation of plasma medicine, it is necessary to solve a large complex of problems, including creating equipment for generating cold plasma, revealing the biological effects of this effect, as well as identifying and justifying the most promising areas of its application. It is known that these biological effects include antibacterial and antiviral activity, the ability to stimulate hemocoagulation, pro-regenerative properties, etc. The possibility of using the factor in tissue engineering and implantology is also shown. Based on this, the purpose of this review was to form a unified understanding of the biological effects and biomedical applications of argon cold plasma. The review shows that cold plasma, like any other physical and chemical factors, has dose dependence, and the variable parameter in this case is the exposure of its application. One of the significant characteristics determining the specificity of the cold plasma effect is the carrier gas selection. This gas carrier is not just an ionized medium but modulates the response of biosystems to it. Finally, the perception of cold plasma by cellular structures can be carried out by activating a special molecular biosensor, the functioning of which significantly depends on the parameters of the medium (in the field of plasma generation and the cell itself). Further research in this area can open up new prospects for the effective use of cold plasma.

摘要

目前,等离子体医学是一个整合了不同专业领域专家力量的综合研究方向。为了使等离子体医学得以成功发展,有必要解决一系列复杂的问题,包括研发用于产生冷等离子体的设备、揭示这种效应的生物学作用,以及确定并论证其最具应用前景的领域。众所周知,这些生物学作用包括抗菌和抗病毒活性、刺激血液凝固的能力、促再生特性等。研究还表明了该因素在组织工程和植入学中的应用可能性。基于此,本综述的目的是形成对氩冷等离子体生物学作用及生物医学应用的统一认识。该综述表明,冷等离子体与任何其他物理和化学因素一样,具有剂量依赖性,在这种情况下,可变参数是其应用时的暴露时间。决定冷等离子体效应特异性的重要特征之一是载气的选择。这种气体载体不仅仅是一种电离介质,还能调节生物系统对它的反应。最后,细胞结构对冷等离子体的感知可以通过激活一种特殊的分子生物传感器来实现,其功能在很大程度上取决于介质参数(在等离子体产生区域以及细胞自身)。该领域的进一步研究可为冷等离子体的有效利用开辟新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ed/9311881/e4a7cd8a05f5/antioxidants-11-01262-g001.jpg

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