Antimicrobial photodynamic therapy against Escherichia coli by exploiting endogenously produced Protoporphyrin IX- In vitro study.

IF 2.1 4区 医学 Q3 ENGINEERING, BIOMEDICAL Lasers in Medical Science Pub Date : 2024-08-01 DOI:10.1007/s10103-024-04150-8
Sana Imtiaz, Muhammad Bilal, Muhammad Saleem
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Abstract

Due to antimicrobial drug resistance, there is a growing interest in the development of light based alternative antibacterial therapies. This research work is focused on the inactivation of Escherichia coli (E. coli) by exploiting the absorption bands 405, 505, 542, 580 and 631 nm of its indigenously produced Protoporphyrin IX (PpIX) excited by three LEDs with broad emission bands at 418, 522 and 630 nm and two laser diodes with narrow emission bands at 405 and 635 nm. Fluorescence spectroscopy and plate count method have been employed for studying the inactivation rate of E. coli strain in autoclaved water suspension. It has been found that LEDs at 418, 522 and 630 nm produced pronounced antimicrobial photodynamic effect on E. coli strain comparing laser diodes at 405 and 635 nm, which might be attributed to the overlapping of broad emission bands of LEDs with the absorption bands of PpIX than narrow emission bands of laser diodes. Particular effect of LED at 522 nm has been noticed because its broad emission band overlaps three absorption bands 505, 542 and 580 nm of PpIX. The gold standard plate count method strongly correlates with Fluorescence spectroscopy, making it an innovative tool to administer bacterial inactivation. The experimental results suggested the development of a light source that entirely overlap absorption bands of PpIx to produce a pronounced antimicrobial photodynamic effect, which might become an effective modality for in vivo disinfection of antibiotic resistant microbes in wounds and lesions.

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利用内源性原卟啉 IX 对大肠杆菌进行抗菌光动力疗法--体外研究。
由于抗菌药物的耐药性,人们对开发光基替代抗菌疗法的兴趣与日俱增。这项研究工作的重点是利用本地生产的原卟啉 IX (PpIX)的 405、505、542、580 和 631 纳米吸收波段灭活大肠杆菌(E. coli),三种发光二极管的宽发射波段分别为 418、522 和 630 纳米,两种激光二极管的窄发射波段分别为 405 和 635 纳米。荧光光谱法和平板计数法被用来研究高压灭菌水悬浮液中大肠杆菌菌株的灭活率。研究发现,与波长为 405 和 635 nm 的激光二极管相比,波长为 418、522 和 630 nm 的 LED 对大肠杆菌菌株产生了明显的光动力抗菌效果,这可能是由于 LED 的宽发射带与 PpIX 的吸收带重叠,而激光二极管的窄发射带不重叠。人们注意到 522 纳米波长的发光二极管的特殊效果,因为它的宽发射带与 PpIX 的三个吸收带 505、542 和 580 纳米波长重叠。金标准平板计数法与荧光光谱法密切相关,使其成为管理细菌灭活的创新工具。实验结果表明,开发一种能完全重叠 PpIX 吸收带的光源可产生明显的光动力抗菌效果,这可能成为对伤口和病变部位的抗生素耐药微生物进行体内消毒的一种有效方式。
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来源期刊
Lasers in Medical Science
Lasers in Medical Science 医学-工程:生物医学
CiteScore
4.50
自引率
4.80%
发文量
192
审稿时长
3-8 weeks
期刊介绍: Lasers in Medical Science (LIMS) has established itself as the leading international journal in the rapidly expanding field of medical and dental applications of lasers and light. It provides a forum for the publication of papers on the technical, experimental, and clinical aspects of the use of medical lasers, including lasers in surgery, endoscopy, angioplasty, hyperthermia of tumors, and photodynamic therapy. In addition to medical laser applications, LIMS presents high-quality manuscripts on a wide range of dental topics, including aesthetic dentistry, endodontics, orthodontics, and prosthodontics. The journal publishes articles on the medical and dental applications of novel laser technologies, light delivery systems, sensors to monitor laser effects, basic laser-tissue interactions, and the modeling of laser-tissue interactions. Beyond laser applications, LIMS features articles relating to the use of non-laser light-tissue interactions.
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