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Efficacy of Pulsed 405-nm LEDs for antimicrobial photodynamic inactivation : effects of intensity, frequency, and duty cycle

机译:脉冲405 nm LED对抗菌光动力灭活的功效:强度,频率和占空比的影响

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摘要

Objective: This study investigates possible advantages in pulsed over continuous 405-nm LED-light for bacterial inactivation and energy efficiency. Background: Alternative non-antibiotic methods of disinfection and infection control have become of significant interest. Recent studies have demonstrated the application of systems using 405-nm light-emitting diodes for continuous disinfection of the clinical environment, and also for potential treatment of contaminated wounds. Methods: Liquid suspensions of 103 CFU/ml populations of Staphylococcus aureus were subject to pulsed 405-nm light of different frequencies, duty cycles and intensities, and for different lengths of time. Results: Pulsed exposures with the same average irradiance of 16 mWcm2 and varying duty cycle (25%, 50%, 75%), showed very similar performance compared with continuous exposures, with 95-98% reduction of S. aureus achieved for all duty cycles. The pulsing frequency was varied in intervals from 100 Hz - 10 kHz and appeared to have little effect on antimicrobial efficacy. However, when comparing pulsed with continuous exposure, an improvement in inactivation per unit optical energy was achieved, with results showing an increase of approximately 83% in optical efficiency. Conclusions: These results suggest that under pulsed conditions a lower energy consumption and lower perceived brightness could be achieved, thus potentially providing improved operating conditions for medical/infection-control applications without compromising antimicrobial efficacy.
机译:目的:本研究旨在研究脉冲式连续405 nm LED灯在灭活细菌和提高能效方面的优势。背景:替代性的非抗生素消毒和感染控制方法已引起广泛关注。最近的研究表明,使用405 nm发光二极管的系统可对临床环境进行连续消毒,也可用于污染伤口的潜在治疗。方法:对103 CFU / ml金黄色葡萄球菌的液体混悬液进行不同频率,占空比和强度,不同时间长度的405 nm脉冲光照射。结果:与连续曝光相比,具有相同的平均辐照度16 mWcm2和不同的占空比(25%,50%,75%)的脉冲曝光显示出非常相似的性能,所有任务的金黄色葡萄球菌减少了95-98%周期。脉冲频率在100 Hz-10 kHz的间隔内变化,似乎对抗菌功效影响很小。然而,当将脉冲曝光与连续曝光进行比较时,每单位光能的失活得到改善,结果表明光效率提高了约83%。结论:这些结果表明,在脉冲条件下可以实现较低的能耗和较低的感知亮度,从而有可能在不损害抗菌功效的情况下为医疗/感染控制应用提供改善的操作条件。

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