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Photodynamic inactivation effect of laser diode on Staphylococcus aureus bacteria with exogenous photosensitizer nano doxycycline 0.1

机译:激光二极管对外源性光敏剂纳米强霉素的激光二极管对激光二极管的灭活作用0.1%

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Infection is the entry of bacteria or pathogenic microorganisms into the body that can cause pain. For example, Staphylococcus aureus infection is caused by direct contamination of wounds, either post-surgical or infection after trauma. This study aims to determine the effectiveness of nano doxycycline as an exogenous photosensitizer agent in antimicrobial photodynamic inactivation (PDI) by using laser diode activator (403±0.02) nm against Staphylococcus aureus bacteria. The study was divided into three groups which were T0 as the untreated control group, T1 as treatment group with nano doxycyclin but without laser exposure, T2 as Treatment group with nano doxycyclin and laser treatments at various exposure times (30, 60, 90, 120, 150) seconds. This study used the Total Plate Count (TPC) method to find out the percentage decrease in the number of colonies. The results of statistical analysis showed that there were significant differences in the number of bacterial colonies due to the addition of nano doxycycline 0.1% and laser diode exposure (403.00±0.02) nm at (150.00±0.01) second with a energy density of (21.83±0.02) J/cm~2. The results showed the addition of nano doxycycline was effective to reduce the number of bacterial colonies with a percentage of deaths of (85.34±1.20)%. So, antimicrobial photodynamic inactivation using laser diode with nano doxycyclin is effective to reduce the number of S. aureus bacteria.
机译:感染是细菌或致病微生物进入体内会导致疼痛的身体。例如,金黄色葡萄球菌感染是由伤口直接污染引起的,在创伤后手术或感染。本研究旨在通过使用激光二极管活化剂(403±0.02)Nm对抗金黄色葡萄球菌的激光二极管活化剂(403±0.02)Nm,确定纳米强霉素作为抗微生物光动力灭活(PDI)中的外源光敏剂剂的有效性。将该研究分为三组,作为未处理对照组T1作为治疗组,具有纳米十二胞环素,但没有激光暴露,T2作为治疗组,具有纳米卵黄素和激光治疗的各种暴露时间(30,60,90,120 ,150)秒。本研究使用了总板数(TPC)方法来了解菌落数量的百分比。统计分析结果表明,由于在(150.00±0.01)秒的纳米强霉素0.1%和激光二极管暴露(403.00±0.02)氮素(21.83 ±0.02)J / cm〜2。结果表明,添加纳米强霉素的添加是有效地减少细菌菌落数量(85.34±1.20)%的百分比。因此,使用具有纳米Doxyclin的激光二极管的抗微生物光动力学失活有效减少金黄色葡萄球菌的数量。

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