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Rotation Disk Process to Assess the Influence of Metals and Voltage on the Growth of Biofilm

机译:旋转盘工艺评估金属和电压对生物膜生长的影响

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摘要

Biofilms consist of not only bacteria but also extracellular polymer substrates (EPS). They are groups of microorganisms that adhere to each other on a surface, especially as a result of exposure to water and bacteria. They can pose health risks to humans as they grow in hospital settings that include medical supplies and devices. In a previous study, the researchers discovered that bacteria/biofilm grew well on wetted external latex, male catheters. These results concerned the investigators and encouraged them to find ways for prohibiting the growth of bacteria/biofilm on the male catheters (which are made of natural rubber). They carried out a new study to assess the influence of metals and voltage for the growth of bacteria on these latex samples. For this purpose, a unique Rotation Disk Reactor was used to accelerate biofilm formation on external male catheter samples. This setup included a dip tank containing water and a rotating wheel with the attached latex samples (some of which had single electrodes while others had paired electrodes with applied voltage). The process allowed the samples to become wetted and also exposed them to microorganisms in the ambient air during each revolution of the wheel. The results (as viewed from SEM images) showed that when compared to the control sample, the presence of metals (brass, stainless steel, and silver) was generally effective in preventing bacterial growth. Also the use of voltage (9.5 volt battery) essentially eliminated the appearance of rod shaped bacteria in some of the samples. It can be concluded that the presence of metals significantly reduced bacterial growth on latex and the application of voltage was able to essentially eliminate bacteria, providing appropriate electrode combinations were used.
机译:生物膜不仅包括细菌,还包括细胞外聚合物底物(EPS)。它们是在表面上相互粘附的微生物群,尤其是由于暴露于水和细菌的结果。当它们在包括医疗用品和设备的医院环境中生长时,它们可能对人类构成健康风险。在先前的研究中,研究人员发现细菌/生物膜在湿的外部乳胶,雄性导管上生长良好。这些结果使研究人员感到关注,并鼓励他们找到方法来阻止雄性导管(由天然橡胶制成)上细菌/生物膜的生长。他们进行了一项新的研究,以评估金属和电压对这些乳胶样品上细菌生长的影响。为此,使用了独特的转盘反应器来加速在外部公导管样品上生物膜的形成。此设置包括一个浸水槽和一个装有附着的乳胶样品的旋转轮(其中一些带有单个电极,而另一些带有成对的电极并施加了电压)。该过程使样品变湿,并且在车轮每次旋转时也将其暴露于环境空气中的微生物中。结果(从SEM图像中看到)显示,与对照样品相比,金属(黄铜,不锈钢和银)的存在通常可以有效地防止细菌生长。同样,使用电压(9.5伏电池)基本上消除了某些样品中棒状细菌的出现。可以得出结论,只要使用适当的电极组合,金属的存在会大大减少乳胶上的细菌生长,并且施加电压能够基本消除细菌。

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