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Comparison Microbial Killing Efficacy between Sonodynamic Therapy and Photodynamic Therapy

机译:声动力疗法与光动力疗法对微生物杀灭功效的比较

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Biofilm is a way used by bacteria to survive from their environmental conditions by forming colony of bacteria. Specific characteristic in biofilm formation is the availability of matrix layer, known as extracellular polymer substance. Treatment using antibiotics may lead bacteria to be to resistant. Other treatments to reduce microbial, like biofilm, can be performed by using photodynamic therapy. Successful of this kind of therapy is induced by penetration of light and photosensitizer into target cells. The sonodynamic therapy offers greater penetrating capability into tissues. This research aimed to use sonodynamic therapy in reducing biofilm. Moreover, it compares also the killing efficacy of photodynamic therapy, sonodynamic therapy, and the combination of both therapeutic schemes (known as sono-photodynamic) to achieve higher microbial killing efficacy. Samples used are Staphylococcus aureus biofilm. Treatments were divided into 4 groups, i.e. group under ultrasound treatment with variation of 5 power levels, group of light treatment with exposure of 75s, group of combined ultrasound-light with variation of ultrasound power levels, and group of combined light-ultrasound with variation of ultrasound power levels. Results obtained for each treatment, expressed in % efficacy of log CFU/mL, showed that the treatment of photo-sonodynamic provides greater killing efficacy in comparison to either sonodynamic and sono-photodynamic. The photo-sonodynamic shows also greater efficacy to photodynamic. So combination of light-ultrasound (photo-sonodynamic) can effectively kill microbial biofilm. The combined therapy will provide even better efficacy using exogenous photosensitizer.
机译:生物膜是细菌通过形成细菌菌落而在环境条件下生存的一种方法。生物膜形成中的特定特征是被称为细胞外聚合物质的基质层的可用性。使用抗生素治疗可能会导致细菌产生耐药性。可以通过使用光动力疗法进行其他减少微生物的疗法,例如生物膜。通过光和光敏剂渗透到靶细胞中可以诱导这种疗法的成功。声动力学疗法提供了更大的穿透组织的能力。这项研究旨在使用声动力学疗法来减少生物膜。此外,它还比较了光动力疗法,声动力疗法和两种治疗方案(称为声光动力疗法)的组合的杀灭效果,以达到更高的微生物杀灭效果。使用的样品是金黄色葡萄球菌生物膜。将治疗分为4组,即超声治疗下功率水平变化为5组,光治疗组曝光时间为75s,超声光功率组合水平变化的超声光治疗组,超声功率水平变化组合的光超声治疗组超声功率水平。以对数CFU / mL的功效%表示的每种治疗获得的结果表明,与声动力学和声光动力学相比,光声动力学治疗具有更大的杀灭效力。光声动力学还显示出对光动力学的更大功效。因此,光超声(光声动力学)的组合可以有效杀死微生物生物膜。使用外源光敏剂,联合疗法将提供更好的疗效。

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