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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Inactivation of Gram-positive biofilms by low-temperature plasma jet at atmospheric pressure
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Inactivation of Gram-positive biofilms by low-temperature plasma jet at atmospheric pressure

机译:大气压下低温等离子体射流灭活革兰氏阳性生物膜

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This work is devoted to the evaluation of the efficiency of a new low-temperature plasma jet driven in ambient air by a dc-corona discharge to inactivate adherent cells and biofilms of Gram-positive bacteria. The selected microorganisms were lactic acid bacteria, a Weissella confusa strain which has the particularity to excrete a polysaccharide polymer (dextran) when sucrose is present. Both adherent cells and biofilms were treated with the low-temperature plasma jet for different exposure times. The antimicrobial efficiency of the plasma was tested against adherent cells and 48h-old biofilms grown with or without sucrose. Bacterial survival was estimated using both colony-forming unit counts and fluorescence-based assays for bacterial cell viability. The experiments show the ability of the low-temperature plasma jet at atmospheric pressure to inactivate the bacteria. An increased resistance of bacteria embedded within biofilms is clearly observed. The resistance is also significantly higher with biofilm in the presence of sucrose, which indicates that dextran could play a protective role.
机译:这项工作致力于评估通过直流电晕放电使周围的革兰氏阳性细菌的细胞和生物膜失活而在环境空气中驱动的新型低温等离子体射流的效率。所选择的微生物是乳酸菌,一种Weissella confusa菌株,具有蔗糖存在时能排泄多糖聚合物(葡聚糖)的特殊性。贴壁细胞和生物膜都用低温等离子体射流处理了不同的暴露时间。测试了血浆对粘附细胞和有或没有蔗糖生长的48h的生物膜的抗菌效率。使用菌落形成单位计数和细菌细胞活力的基于荧光的测定法估计细菌存活率。实验表明,大气压下的低温等离子体射流能够灭活细菌。清楚地观察到嵌入生物膜内的细菌的抵抗力增强。在存在蔗糖的情况下,生物膜的抗药性也明显更高,这表明右旋糖酐可以起保护作用。

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