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Photodynamic Potential of Blue Diode Laser Inactivation with Chlorophyll Photosensitisers in Pseudomonas aeruginosa and Staphylococcus aureus bacteria

机译:蓝二极管激光失活的光动力动力潜力与铜绿假单胞菌和金黄色葡萄球菌的叶绿素光电腺苷酸

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Photodynamic Inactivation (PDI) research has been conducted as a method of photodynamic therapy that combines blue diode laser light (405 nm) with Alfalfa chlorophyll photosensitiser so that it can produce reactive oxygen species that cause biological damage to the target. This study aims to determine the potential of blue diode lasers and the addition of 20% chlorophyll photosensitiser to reduce gram-positive Staphylococcus aureus and gram-negative Pseudomonas aeruginosa which can cause skin infections. The method used is a blue diode laser irradiation of bacteria by the addition of chlorophyll and Total Plate Count (TPC) to determine the decrease in bacterial viability in units of CFU/ml. Test results show that photodynamic inactivation with a blue diode laser and chlorophyll can reduce bacterial viability. Irradiation for 180 seconds at a dose of 1.59 J/cm2 gives the most bacterial death results. The percentage of bacterial death of Staphylococcus aureus was (35.44 ± 1.67)% without photosensitiser, and with photosensitiser the percentage of bacterial deaths increased to (53.59 ± 1.36)%. While the percentage of Pseudomonas aeruginosa bacterial deaths was (20.02 ± 0.76)% without photosensitisers, and with additional photosensitisers it increased to (44.24 ± 1.50)%.
机译:光动力灭活(PDI)研究已经进行为光动力治疗方法,其将蓝二极管激光(405nm)与苜蓿叶绿素光敏剂相结合,使得它可以产生导致目标生物损伤的活性氧物质。本研究旨在确定蓝二极管激光器的潜力,并加入20%叶绿素光敏剂,以减少革兰氏阳性金黄色葡萄球菌和革兰氏阴性假单胞菌铜绿假单胞菌,这会导致皮肤感染。使用的方法是通过加入叶绿素和总板数(TPC)来确定细菌的蓝二极管激光照射,以确定以CFU / mL为单位的细菌活力降低。测试结果表明,具有蓝二极管激光和叶绿素的光动力灭活可以降低细菌活力。在1.59J / cm 2的剂量下照射180秒给出了最多的细菌死亡结果。金黄色葡萄球菌的细菌死亡百分比(35.44±1.67)%,没有光敏剂,细菌死亡百分比增加到(53.59±1.36)%。虽然假单胞菌细菌死亡的百分比(20.02±0.76)%,但没有光敏剂,并且额外的光敏性增加到(44.24±1.50)%。

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