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Air-Based Coaxial Dielectric Barrier Discharge Plasma Source for Pseudomonas aeruginosa Biofilm Eradication

机译:空气的同轴介质屏障排放血浆源,用于假单胞菌铜绿假单胞菌生物膜消除

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摘要

Biofilms cause biofouling, pipe plugging, prostheses colonization, disease, and nosocomial infections. Bacterial biofilms are more resilient to sterilization methods than planktonic bacteria; therefore, better control methods are required. The use of gas discharge plasmas is an appropriate alternative because plasmas contain a mixture of reactive agents that are well known for bacterial decontamination. This study assesses culture medium-abiotic surface combinations leading to robust biofilms and tests an air-based coaxial dielectric barrier discharge (DBD) plasma source on Pseudomonas aeruginosa biofilms grown in continuous culture under those selected conditions. Biofilms were eradicated after a 15-min plasma treatment, resulting in a CFU/mL decrease of 5.6 log]0 units. CFU/mL decreases of 1.6 and 2.7 log)0 units were achieved after a 3-min plasma exposure to ambient and moistened air plasma, respectively, although viability assays showed that some cells were alive. Moistened-air plasma resulted in a faster biofilm inactivation, with decimal reduction times of 1.14 and 4.36 min. The coaxial DBD air-based plasma source presented here is effective for Pseudomonas biofilm inactivation, affordable because it does not rely on expensive gases, and easy to handle for indirect surface treatment. To the best of our knowledge, the search for the best combination medium surface leading to robust biofilms before plasma treatment has not been previously assessed.
机译:生物膜导致生物污染,管道堵塞,假体殖民化,疾病和医院感染。细菌生物膜比氏菌菌细菌更具弹性。因此,需要更好的控制方法。使用气体放电等离子体是一种合适的替代方案,因为血浆含有众所周知的可用于细菌去污的反应性药剂的混合物。该研究评估了培养基 - 非生物表面组合,导致鲁棒生物膜,并测试在那些选定条件下在连续培养的伪霉素生物膜上生长的假单胞菌铜绿假单胞菌的空气基同轴介质屏障放电(DBD)等离子体源。在15分钟的等离子体处理后,生物膜被消除,导致5.6原木的CFU / mL减少0单位。 CFU / ml减少1.6和2.7 log)0单位在3分钟的血浆暴露于环境和湿润的空气血浆后,尽管活力测定显示一些细胞活着。湿润的空气等离子体导致生物膜失活速度更快,小数减少1.14和4.36分钟。本文介绍的同轴DBD空气基源极针对假单胞菌生物膜失活有效,价格实惠,因为它不依赖于昂贵的气体,并且易于处理间接表面处理。据我们所知,先前未经预先评估在等离子体处理之前寻找最佳组合培养基表面,导致血浆治疗前的鲁棒生物膜。

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