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Synergetic inactivation of iStaphylococcus epidermidis/i and iStreptococcus mutans/iin a TiO2/H2O2/UV system

机译:TiO2 / H2O2 / UV系统中表皮葡萄球菌和变形链球菌的协同失活

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摘要

TiO2 photocatalysis can be used to kill surface adherent bacteria on biomaterials, and is particularly interesting for use with percutaneous implants and devices. Its efficiency and safety, however, depend on the activation energy required. This in vitro study investigates synergetic effects against the clinically relevant strains S. epidermidis and S. mutans when combining photocatalytic surfaces with H2O2. After 20 min exposure to 0.1 wt% H2O2 and UV light on TiO2 surfaces, viabilities of S. epidermidis and S. mutans were reduced by 99.7% and 98.9%, respectively. Without H2O2 the corresponding viability reduction was 86% for S. epidermidis and 65% for S. mutans. This study indicates that low concentrations of H2O2 can enhance the efficiency of photocatalytic TiO2 surfaces, which could potentially improve current techniques used for decontamination and debridement of TiO2 coated biomedical implants and devices.
机译:TiO2光催化可用于杀死生物材料上的表面附着细菌,特别适合与经皮植入物和设备一起使用。然而,其效率和安全性取决于所需的活化能。这项体外研究研究了将光催化表面与H2O2结合时对临床相关菌株表皮葡萄球菌和变形链球菌的协同作用。在TiO2表面暴露于0.1 wt%的H2O2和UV光20分钟后,表皮葡萄球菌和变形链球菌的活力分别降低了99.7%和98.9%。没有过氧化氢,表皮链球菌的相应活力降低为86%,变形链球菌的活力降低为65%。这项研究表明,低浓度的H2O2可以提高光催化TiO2表面的效率,这可能会改善目前用于TiO2涂层生物医学植入物和设备的去污和清创的现有技术。

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