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The efficacy of photodynamic inactivation with laser diode on Staphylococcus aureus biofilm with various ages of biofilm

机译:光动力灭活与激光二极管在金黄色葡萄球菌的效果生物膜中的生物膜

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摘要

Biofilms are able to casue microorganisms to be 80% more resistant to antibiotics. The extracelullar polymeric substance (EPS) in biofilm functions to protect bacteria, making it difficult for antibiotics to penetrate the biofilm layer. This study aims to determine the effective- ness of photodynamic inactivation with blue diode laser to reduce Staphylococcus aureus biofilm at various ages of biofilms. The light source is a 403 nm blue diode laser with an energy power of about 27.65±0.01 mW. The study was designed with two groups: Group C was the untreated control group with variations in age of biofilms (0; 6; 11; 17; 24; 32; 40 and 48) hours; Group T was a laser treatment group with variations in age of biofilm and energy density (4.23; 8.46; 12.70; 16.93 and 21.16) J/cm2. Biofilm reduction measurement method using ELISA test was performed to calculate OD595 value. The statistical analysis results of variance showed that there was an influence of biofilm age and irradiation energy density of laser on biofilm reduction. Optical density analysis showed the most optimum biofilm reduction happened when biofilm age is perfectly constructed (about 17 hours) and with 91% reduction. The longer biofilm age lived among those biofilms, the greater the reduction. The results of the Scanning Microscope Electron and fluorescent microscope measurement showed destruction site of the EPS biofilm and bacterial cell death. So, the activated photodynamic with 403 nm laser diode is effective to reduce the Staphylococcus aureus biofilm in the maturation phase.
机译:生物膜能够将微生物塑造至80%以抗生素耐药。生物膜中的肾盂聚合物(EPS)用于保护细菌,使抗生素难以渗透生物膜层。本研究旨在确定具有蓝二极管激光的光动力失活的有效,以减少生物膜各种年龄的金黄色葡萄球菌生物膜。光源是403nm蓝二极管激光器,能量功率为约27.65±0.01 mw。该研究设计有两组:C组是未处理对照组,生物膜年龄的变化(0; 6; 11; 17; 24; 32; 40和48)小时;组T是一种激光治疗组,具有生物膜和能量密度的年龄的变化(4.23; 8.46; 12.70; 16.93和21.16)J / CM2。使用ELISA测试的生物膜还原测量方法计算OD595值。方差统计分析结果表明,生物膜年龄和激光辐照能量密度对生物膜减少的影响。光学密度分析显示,当生物膜年龄完美构建(约17小时)并减少91%时,发生最佳的生物膜减少。生物膜年龄越长,在那些生物膜中寿命,还原越大。扫描显微镜电子和荧光显微镜测量的结果表明EPS生物膜和细菌细胞死亡的破坏部位。因此,具有403nm激光二极管的活性光动力学可有效地减少成熟阶段的金黄色葡萄球菌。

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