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连续微波辐照对铜绿假单胞菌PAO1生长及抗生素敏感性的非热效应演示。

A demonstration of athermal effects of continuous microwave irradiation on the growth and antibiotic sensitivity of Pseudomonas aeruginosa PAO1.

作者信息

Nakouti Ismini, Hobbs Glyn, Teethaisong Yothin, Phipps David

机构信息

Built Environment and Sustainable Technology Research Inst, Liverpool John Moores University, Byrom Street, Liverpool, L3 3AF, U.K.

Pharmacy and Biomolecular Sciences, Liverpool John Moores University, Byrom Street, Liverpool, L3 3AF, U.K.

出版信息

Biotechnol Prog. 2017 Jan;33(1):37-44. doi: 10.1002/btpr.2392. Epub 2016 Nov 14.

Abstract

Stress, caused by exposure to microwaves (2.45 GHz) at constant temperature (37 ± 0.5°C), alters the growth profile of Pseudomonas aeruginosa PAO1. In the absence of microwave treatment a simple, highly reproducible growth curve was observed over 24 h or more. Microwave treatment caused no reduction in growth during the first 6 h, but at a later stage (>12 h) the growth was markedly different to the controls. Secondary growth, typical of the presence of persisters clearly became apparent, as judged by both the dissolved oxygen and the cell density profiles. These treated cells showed distinct morphological changes, but on regrowth these cells reverted to normal. The microwave induced persisters were subject to antibiotic challenge (tobramycin) and showed increased sensitivity when compared to the unstressed planktonic cells. This is in marked contrast to antibiotic induced persisters which show increased resistance. This provides evidence for both a nonthermal effect of microwaves and a previously undescribed route to a novel form of antibiotic susceptible persister cells. © 2016 American Institute of Chemical Engineers Biotechnol. Prog., 33:37-44, 2017.

摘要

在恒温(37±0.5°C)条件下,暴露于微波(2.45 GHz)所引起的应激会改变铜绿假单胞菌PAO1的生长曲线。在未进行微波处理时,24小时或更长时间内可观察到简单且高度可重复的生长曲线。微波处理在最初6小时内对生长无抑制作用,但在后期(>12小时),其生长情况与对照组明显不同。通过溶解氧和细胞密度曲线判断,典型的持留菌存在导致的二次生长明显显现。这些经处理的细胞呈现出明显的形态变化,但再次生长时又恢复正常。与未受应激的浮游细胞相比,微波诱导产生的持留菌对抗生素(妥布霉素)刺激表现出更高的敏感性。这与抗生素诱导产生的持留菌表现出更高抗性形成显著对比。这为微波的非热效应以及一种此前未被描述的通向新型抗生素敏感持留菌细胞形式的途径提供了证据。© 2016美国化学工程师学会生物技术进展,33:37 - 44, 2017。

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