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快速原位评估铜离子介导的作用和铜表面的抗菌效果。

Rapid in situ assessment of Cu-ion mediated effects and antibacterial efficacy of copper surfaces.

机构信息

Laboratory of Environmental Toxicology, National Institute of Chemical Physics and Biophysics, Tallinn, Estonia.

Department of Natural Sciences, Tallinn University of Technology, Tallinn, Estonia.

出版信息

Sci Rep. 2018 May 25;8(1):8172. doi: 10.1038/s41598-018-26391-8.

Abstract

Release of metal ions from metal-based surfaces has been considered one of the main drivers of their antimicrobial activity. Here we describe a method that enables parallel assessment of metal ion release from solid metallic surfaces and antimicrobial efficacy of these surfaces in a short time period. The protocol involves placement of a small volume of bioluminescent bacteria onto the tested surface and direct measurement of bioluminescence at various time points. In this study, two recombinant Escherichia coli strains, one expressing bioluminescence constitutively and applicable for general antimicrobial testing, and the other induced by Cu ions, were selected. Decrease in bioluminescence of constitutive E. coli on the surfaces showed a good correlation with the decrease in bacterial viability. Response of Cu-inducible E. coli showed a correlation with Cu content in the tested surfaces but not with Cu dissolution suggesting the role of direct bacteria-surface contact in Cu ion-driven antibacterial effects. In summary, the presented protocol enables the analysis of microbial toxicity and bioavailability of surface-released metal ions directly on solid surfaces within 30-60 min. Although optimized for copper and copper alloy surfaces and E. coli, the method can be extended to other types of metallic surfaces and bacterial strains.

摘要

金属离子从金属基表面的释放被认为是其抗菌活性的主要驱动因素之一。在这里,我们描述了一种方法,能够在短时间内平行评估固体金属表面的金属离子释放和这些表面的抗菌效果。该方案涉及将少量生物发光细菌置于测试表面上,并在各个时间点直接测量生物发光。在这项研究中,选择了两种重组大肠杆菌菌株,一种是组成型表达生物发光的,适用于一般抗菌测试,另一种是由铜离子诱导的。在表面上组成型大肠杆菌生物发光的减少与细菌活力的减少呈良好相关性。可诱导铜大肠杆菌的反应与测试表面中的铜含量相关,但与铜溶解无关,这表明直接细菌与表面接触在铜离子驱动的抗菌作用中起作用。总之,所提出的方案能够在 30-60 分钟内在固体表面上直接分析微生物毒性和表面释放的金属离子的生物利用度。尽管该方法针对铜和铜合金表面以及大肠杆菌进行了优化,但可以扩展到其他类型的金属表面和细菌菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbed/5970231/ab2df7f7436c/41598_2018_26391_Fig1_HTML.jpg

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