Younis Waleed Othman, Berekaa Mahmoud Mohamed, Mohamed Abdel-Aleem Hefney
Pak J Biol Sci. 2020 Jan;23(3):248-256. doi: 10.3923/pjbs.2020.248.256.
Atmospheric pressure plasma jet (APPJ) gained great interest due to its effectiveness as selective non-lethal technique with low operational costs. In this study, argon APPJ system was designed and the generated cold plasma was applied in disinfection of microbial cells.
Argon APPJ was generated by blowing argon through capillary metallic tube inserted in alumina and powered by 8-25 kHz sinusoidal voltage waveform. The plasma applied in inactivation of microbes by direct exposure of cell suspension, approximately 10 mm below jet nozzle, for different intervals. Interference of organics in exposure medium, on lethal activity of plasma was investigated.
APPJ jet induced high levels of reactive oxygen (ROS) and nitrogen species (RNS). Jet length increased with applied voltage and flow rate in laminar mode, but decreased with flow rate in turbulent mode. Percent reduction in living cell count was 98.3 and 94.1%, for E. coli and S. aureus suspended in water after 30s of exposure, respectively, with 2.7- and 2-folds increase in plasma lethal activity, as compared with LB broth medium. D-values (Decimal Reduction Time) were increased from 34-333, 37-476 and 139-385 s for E. coli, S. aureus and C. albicans in water and complex liquid organic media, respectively.
Designed argon APPJ system can be used in disinfection of different microbes. Plasma antimicrobial activity drastically decreased in presence of organic matter. The generated plasma can be promising approach for treatment of diseases, especially caused by antibiotic-resistant pathogens.
大气压等离子体射流(APPJ)作为一种具有低运行成本的选择性非致命技术,因其有效性而备受关注。在本研究中,设计了氩气APPJ系统,并将产生的冷等离子体应用于微生物细胞的消毒。
通过将氩气吹过插入氧化铝中的毛细管金属管来产生氩气APPJ,并由8 - 25 kHz正弦电压波形供电。将等离子体通过直接暴露位于喷嘴下方约10 mm处的细胞悬液不同时间间隔,用于微生物的灭活。研究了暴露介质中有机物对等离子体致死活性的干扰。
APPJ射流诱导产生高水平的活性氧(ROS)和活性氮(RNS)。在层流模式下,射流长度随施加电压和流速增加,但在湍流模式下随流速降低。暴露30秒后,悬浮在水中的大肠杆菌和金黄色葡萄球菌活细胞计数分别减少了98.3%和94.1%,与LB肉汤培养基相比,等离子体致死活性分别提高了2.7倍和2倍。在水和复杂液体有机介质中,大肠杆菌、金黄色葡萄球菌和白色念珠菌的D值(十进制减少时间)分别从34 - 333秒、37 - 476秒和139 - 385秒增加。
设计的氩气APPJ系统可用于不同微生物的消毒。在存在有机物的情况下,等离子体抗菌活性急剧下降。所产生的等离子体可能是治疗疾病,特别是由耐抗生素病原体引起的疾病的有前景的方法。