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在37°C下使用唾液替代品的气管模型中,用405纳米光对葡萄球菌进行光灭活。

Photoinactivation of Staphylococci with 405 nm Light in a Trachea Model with Saliva Substitute at 37 °C.

作者信息

Meurle Tobias, Knaus Johannes, Barbano Agustin, Hoenes Katharina, Spellerberg Barbara, Hessling Martin

机构信息

Institute of Medical Engineering and Mechatronics, Ulm University of Applied Sciences, 89081 Ulm, Germany.

Institute of Medical Microbiology and Hygiene, University of Ulm, 89081 Ulm, Germany.

出版信息

Healthcare (Basel). 2021 Mar 11;9(3):310. doi: 10.3390/healthcare9030310.

Abstract

The globally observed rise in bacterial resistance against antibiotics has increased the need for alternatives to antibiotic treatments. The most prominent and important pathogen bacteria are the ESKAPE pathogens, which include among others , and . These species cause ventilator-associated pneumonia (VAP), which accounts for 24% of all nosocomial infections. In this study we tested the efficacy of photoinactivation with 405 nm violet light under conditions comparable to an intubated patient with artificial saliva for bacterial suspension at 37 °C. A technical trachea model was developed to investigate the visible light photoinactivation of as a non-pathogen surrogate of the ESKAPE pathogen (MRSA). The violet light was coupled into the tube with a fiber optic setup. The performed tests proved, that photoinactivation at 37 °C is more effective with a reduction of almost 3 log levels (99.8%) compared to 25 °C with a reduction of 1.2 log levels. The substitution of phosphate buffered saline (PBS) by artificial saliva solution slightly increased the efficiency during the experimental course. The increased efficiency might be caused by a less favorable environment for bacteria due to for example the ionic composition.

摘要

全球范围内观察到的细菌对抗生素耐药性的上升,增加了对抗生素治疗替代方法的需求。最突出和重要的病原菌是ESKAPE病原菌,其中包括 等。这些菌种会引发呼吸机相关性肺炎(VAP),占所有医院感染的24%。在本研究中,我们在与插管患者及人工唾液类似的条件下,于37°C对细菌悬液测试了405nm紫光的光灭活效果。开发了一种技术气管模型,以研究作为ESKAPE病原菌 (耐甲氧西林金黄色葡萄球菌,MRSA)非病原菌替代物的 的可见光光灭活情况。紫光通过光纤装置耦合到管中。所进行的测试证明,与25°C时1.2个对数水平的降低相比,37°C时的光灭活效果更显著,降低了近3个对数水平(99.8%)。在实验过程中,用人造唾液溶液替代磷酸盐缓冲盐水(PBS)略微提高了效率。效率的提高可能是由于例如离子组成等对细菌不太有利的环境所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64e4/7998829/f38f0ffdfa3b/healthcare-09-00310-g001.jpg

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