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光动力消毒及其在传染病控制中的作用。

Photodynamic disinfection and its role in controlling infectious diseases.

机构信息

Chemistry Department, University of Coimbra, 3004-535, Coimbra, Portugal.

出版信息

Photochem Photobiol Sci. 2021 Nov;20(11):1497-1545. doi: 10.1007/s43630-021-00102-1. Epub 2021 Oct 27.

Abstract

Photodynamic therapy is witnessing a revival of its origins as a response to the rise of multi-drug resistant infections and the shortage of new classes of antibiotics. Photodynamic disinfection (PDDI) of microorganisms is making progresses in preclinical models and in clinical cases, and the perception of its role in the clinical armamentarium for the management of infectious diseases is changing. We review the positioning of PDDI from the perspective of its ability to respond to clinical needs. Emphasis is placed on the pipeline of photosensitizers that proved effective to inactivate biofilms, showed efficacy in animal models of infectious diseases or reached clinical trials. Novel opportunities resulting from the COVID-19 pandemic are briefly discussed. The molecular features of promising photosensitizers are emphasized and contrasted with those of photosensitizers used in the treatment of solid tumors. The development of photosensitizers has been accompanied by the fabrication of a variety of affordable and customizable light sources. We critically discuss the combination between photosensitizer and light source properties that may leverage PDDI and expand its applications to wider markets. The success of PDDI in the management of infectious diseases will ultimately depend on the efficacy of photosensitizers, affordability of the light sources, simplicity of the procedures, and availability of fast and efficient treatments.

摘要

光动力疗法正在复兴,其起源是为了应对多药耐药感染的兴起和新型抗生素类药物的短缺。光动力杀菌(PDDI)在微生物方面的临床前模型和临床案例中都取得了进展,人们对其在传染病临床治疗手段中的作用的看法也在发生变化。我们从应对临床需求的能力角度来审查 PDDI 的定位。重点介绍了那些已被证明能够有效灭活生物膜、在传染病动物模型中显示出疗效或已进入临床试验的光敏剂的进展。简要讨论了 COVID-19 大流行带来的新机会。强调了有前途的光敏剂的分子特征,并将其与用于治疗实体瘤的光敏剂进行了对比。光敏剂的开发伴随着各种价格实惠且可定制的光源的制造。我们批判性地讨论了光敏剂和光源特性之间的组合,这些组合可能会利用光动力杀菌并将其应用扩展到更广泛的市场。光动力杀菌在传染病管理中的成功最终将取决于光敏剂的疗效、光源的可负担性、程序的简单性以及快速有效的治疗方法的可用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e872/8548867/4ea64ceead40/43630_2021_102_Fig1_HTML.jpg

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