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玫瑰红 Bengal 介导的光动力疗法抑制白色念珠菌。

Rose Bengal-Mediated Photodynamic Therapy to Inhibit Candida albicans.

机构信息

Institute of Clinical Medicine, College of Medicine, National Cheng Kung University; Department of Ophthalmology, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University.

Department of Dermatology, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University; Department of Microbiology and Immunology, College of Medicine, National Cheng Kung University.

出版信息

J Vis Exp. 2022 Mar 24(181). doi: 10.3791/63558.

Abstract

Invasive Candida albicans infection is a significant opportunistic fungal infection in humans because it is one of the most common colonizers of the gut, mouth, vagina, and skin. Despite the availability of antifungal medication, the mortality rate of invasive candidiasis remains ~50%. Unfortunately, the incidence of drug-resistant C. albicans is increasing globally. Antimicrobial photodynamic therapy (aPDT) may offer an alternative or adjuvant treatment to inhibit C. albicans biofilm formation and overcome drug resistance. Rose bengal (RB)-mediated aPDT has shown effective cell killing of bacteria and C. albicans. In this study, the efficacy of RB-aPDT on multidrug-resistant C. albicans is described. A homemade green light-emitting diode (LED) light source is designed to align with the center of a well of a 96-well plate. The yeasts were incubated in the wells with different concentrations of RB and illuminated with varying fluences of green light. The killing effects were analyzed by the plate dilution method. With an optimal combination of light and RB, 3-log growth inhibition was achieved. It was concluded that RB-aPDT might potentially inhibit drug-resistant C. albicans.

摘要

侵袭性白色念珠菌感染是一种严重的机会性真菌感染,因为它是肠道、口腔、阴道和皮肤中最常见的定植菌之一。尽管有抗真菌药物可用,但侵袭性念珠菌病的死亡率仍约为 50%。不幸的是,全球范围内耐药物的白色念珠菌的发病率正在增加。光动力抗菌疗法(aPDT)可能提供一种替代或辅助治疗方法,以抑制白色念珠菌生物膜的形成并克服耐药性。玫瑰红(RB)介导的 aPDT 已显示出对细菌和白色念珠菌有效的细胞杀伤作用。在这项研究中,描述了 RB-aPDT 对多药耐药白色念珠菌的疗效。设计了一种自制的绿光发光二极管(LED)光源,使其与 96 孔板孔的中心对齐。将酵母菌在含有不同浓度 RB 的孔中孵育,并以不同的绿光辐照度照射。通过平板稀释法分析杀伤效果。在光和 RB 的最佳组合下,实现了 3 对数的生长抑制。因此,RB-aPDT 可能具有抑制耐药性白色念珠菌的潜力。

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