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The combination of antimicrobial photocatalysis and antimicrobial photodynamic therapy to eradicate the extensively drug-resistant colistin resistant Acinetobacter baumannii

机译:抗微生物光催化和抗微生物光动力学治疗的组合来消除广泛的耐药性耐药性抗性抗血管杆菌Baumannii

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Background: The appearance of bacterial resistance to antibiotics a are major health problems. Antimicrobial photodynamic therapy (aPDT) has emerged as an adjunctive treatment for drug-resistant infections. Titanium dioxide (TiO2) and zinc oxide (ZnO) nanoparticles have recently been proposed as effective carriers for photosensitizers. The present study was designed to evaluate the antibacterial activity of ZnO and TiO2 -nanoparticles accompanying aPDT and antimicrobial photocatalysis approaches against extensively drug-resistant colistin resistant Acinetobacter baumannii (XDR - CO-Ab).Materials and methods: A XDR - CO-Ab isolated from burn-wound infection was used in this study. The bacterial suspension was exposed to TBO (Toluidine blue O), TiO2, and ZnO-nanoparticles in different groups. Ultraviolet A (UVA) (320 nm) and blue laser light (405 nm) were used to activate the photosensitizer and nanoparticles. The bacterial viability was then determined by counting the number of colonies forming units (CFUs)/mL.Results: Using both aPDT and antimicrobial photocatalysis methods simultaneously, it had an amazing resu so that 99.32 % of XDR - CO-Ab was killed. According to the results, the bactericidal effects of activated TBO using UVA and laser lights was 5.1 % more than TBO was excited with laser light alone.Conclusions: It was found that the combination of photocatalyst (TiO2 + ZnO-nanoparticles) and TBO as photosensitizer at two-wavelength irradiation with blue laser and UVA lights have been shown to have significant antimicrobial effects.
机译:背景:对抗生素A的细菌抗性的外观是主要的健康问题。抗微生物光动力治疗(APDT)被出现为耐药性感染的辅助处理。最近已经提出了二氧化钛(TiO 2)和氧化锌(ZnO)纳米颗粒作为光敏剂的有效载体。本研究旨在评估ZnO和TiO2的抗菌活性,伴随APDT和抗微生物光催化分解方法,反对广泛的耐药性耐药性抗性抗性抗菌菌(XDR - Co-AB)。材料和方法:XDR - Co-AB孤立从伯伤的感染中用于本研究。将细菌悬浮液暴露于不同基团中的TOBO(甲苯胺蓝O),TiO 2和ZnO纳米颗粒。紫外线A(UVA)(320nm)和蓝色激光(405nm)用于活化光敏剂和纳米颗粒。然后通过计数形成单元(CFU)/mL的菌落数来确定细菌活力。结果:使用APDT和抗微生物的光催化方法同时使用令人惊叹的结果;因此,99.32%的XDR - Co-AB被杀死。根据结果​​,使用UVA和激光光激活的TBO的杀菌效应比单独激光激发比TBO为5.1%。结论:发现光催化剂(TiO2 + ZnO-纳米粒子)和TBO作为光敏剂的组合在具有蓝色激光和UVA灯的双波长辐照下,已被证明具有显着的抗微生物效应。

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