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研究大气压等离子体对伤口愈合过程的影响。

Investigating effects of atmospheric-pressure plasma on the process of wound healing.

作者信息

Salehi Shahram, Shokri Asana, Khani Mohammad Reza, Bigdeli Mohammadreza, Shokri Babak

机构信息

Department of Physics, Shahid Beheshti University, G.C., Evin, Tehran 18939, Iran.

Department of Cell and Molecular Biology, Tehran University, Tehran 141556455, Iran.

出版信息

Biointerphases. 2015 Jun 10;10(2):029504. doi: 10.1116/1.4914377.

Abstract

Cold atmospheric-pressure plasma jets (APPJ) have excellent applications in biomedicine. Advantages of APPJ include lack of need for vacuum systems, capability of operation for a long time, and safe to be directly touched by living tissues such as a human body. In this study, an APPJ was generated by a dielectric barrier and applied for the treatment of chemical wounds. This APPJ worked with argon and was driven by high-voltage pulses. This paper compares the spontaneous healing of wounds and a stimulated healing using daily APPJ treatment. Biological data, such as hematological, biochemical, and histological parameters, were remarked. The mortality and morbidity of the untreated samples were reported after 20 days in comparison with the plasma-treated samples, which were alive after these days. Experimental results demonstrated that an increase in the oxidative stress could result in the decreased destruction of lesions by controlling the infection growth. These results were related to the presence of reactive oxygen species and reactive nitrogen species in the plasma volume, which were detected by optical emission spectroscopy.

摘要

冷大气压等离子体射流(APPJ)在生物医学领域有出色的应用。APPJ的优点包括无需真空系统、能够长时间运行,并且可安全地直接接触人体等活体组织。在本研究中,通过介质阻挡产生了一种APPJ,并将其应用于化学创伤的治疗。这种APPJ以氩气为工作气体,由高压脉冲驱动。本文比较了伤口的自然愈合情况以及每日使用APPJ治疗的促进愈合情况。记录了血液学、生物化学和组织学等生物学数据参数。与经过等离子体处理后存活的样本相比,报告了未处理样本在20天后的死亡率和发病率。实验结果表明,通过控制感染的生长,氧化应激的增加可导致损伤破坏的减少。这些结果与等离子体中活性氧和活性氮的存在有关,它们通过光发射光谱法检测到。

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