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非靶标生物分子改变杀菌低温等离子体诱导的大分子变化。

Nontarget Biomolecules Alter Macromolecular Changes Induced by Bactericidal Low-Temperature Plasma.

作者信息

Privat-Maldonado A, Gorbanev Y, O'Connell D, Vann R, Chechik V, van der Woude M W

机构信息

1Department of BiologyCentre for Immunology and Infection.

2Department of PhysicsYork Plasma Institute, University of YorkYorkYO10 5DDU.K.

出版信息

IEEE Trans Radiat Plasma Med Sci. 2017 Oct 11;2(2):121-128. doi: 10.1109/TRPMS.2017.2761405. eCollection 2018 Mar.

Abstract

Low-temperature plasmas (LTPs) have a proven bactericidal activity governed by the generated reactive oxygen and nitrogen species (RONS) that target microbial cell components. However, RONS also interact with biomolecules in the environment. Here we assess the impact of these interactions upon exposure of liquid suspensions with variable organic content to an atmospheric-pressure dielectric barrier discharge plasma jet. serovar Typhimurium viability in the suspension was reduced in the absence [e.g., phosphate buffered saline (PBS)], but not in the presence of (high) organic content [Dulbecco's Modified Eagle's Medium (DMEM), DMEM supplemented with foetal calf serum, and Lysogeny Broth]. The reduced viability of LTP-treated bacteria in PBS correlated to a loss of membrane integrity, whereas double-strand DNA breaks could not be detected in treated single cells. The lack of bactericidal activity in solutions with high organic content correlated with a relative decrease of OH and O/O(a[Formula: see text])/O, and an increase of HO and [Formula: see text] in the plasma-treated solutions. These results indicate that the redox reactions of LTP-generated RONS with nontarget biomolecules resulted in a RONS composition with reduced bactericidal activity. Therefore, the chemical composition of the bacterial environment should be considered in the development of LTP for antimicrobial treatment, and may affect other biomedical applications as well.

摘要

低温等离子体(LTPs)具有已被证实的杀菌活性,其由针对微生物细胞成分的活性氧和氮物种(RONS)所控制。然而,RONS也会与环境中的生物分子相互作用。在此,我们评估了这些相互作用对可变有机含量的液体悬浮液暴露于大气压介质阻挡放电等离子体射流时的影响。在无有机成分[例如磷酸盐缓冲盐水(PBS)]的情况下,悬浮液中鼠伤寒血清型沙门氏菌的活力降低,但在存在(高)有机成分[杜氏改良伊格尔培养基(DMEM)、添加胎牛血清的DMEM以及溶菌肉汤]时则不然。在PBS中经LTP处理的细菌活力降低与膜完整性丧失相关,而在处理过的单细胞中未检测到双链DNA断裂。在高有机含量溶液中缺乏杀菌活性与经等离子体处理的溶液中OH和O/O(a[公式:见原文])/O的相对减少以及HO和[公式:见原文]的增加相关。这些结果表明,LTP产生的RONS与非靶标生物分子的氧化还原反应导致了具有降低杀菌活性的RONS组成。因此,在开发用于抗菌治疗的LTP时应考虑细菌环境的化学成分,并且这也可能影响其他生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0cc/6051481/ab9fc021860e/vande1-2761405.jpg

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