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亚胺蓝和甲苯胺蓝对真菌金龟子绿僵菌和构巢曲霉分生孢子的光动力灭活作用。

Photodynamic inactivation of conidia of the fungi Metarhizium anisopliae and Aspergillus nidulans with methylene blue and toluidine blue.

机构信息

Departamento de Análises Clínicas, Toxicológicas e Bromatológicas, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.

出版信息

Photochem Photobiol. 2010 May-Jun;86(3):653-61. doi: 10.1111/j.1751-1097.2009.00689.x. Epub 2010 Jan 22.

Abstract

Antimicrobial photodynamic treatment (PDT) is a promising method that can be used to control localized mycoses or kill fungi in the environment. A major objective of the current study was to compare the conidial photosensitization of two fungal species (Metarhizium anisopliae and Aspergillus nidulans) with methylene blue (MB) and toluidine blue (TBO) under different incubation and light conditions. Parameters examined were media, photosensitizer (PS) concentration and light source. PDT with MB and TBO resulted in an incomplete inactivation of the conidia of both fungal species. Conidial inactivation reached up to 99.7%, but none of the treatments was sufficient to achieve a 100% fungicidal effect using either MB or TBO. PDT delayed the germination of the surviving conidia. Washing the conidia to remove unbound PS before light exposure drastically reduced the photosensitization of A. nidulans. The reduction was much smaller in M. anisopliae conidia, indicating that the conidia of the two species interact differently with MB and TBO. Conidia of green and yellow M. anisopliae mutants were less affected by PDT than mutants with white and violet conidia. In contrast to what occurred in PBS, photosensitization of M. anisopliae and A. nidulans conidia was not observed when PDT was performed in potato dextrose media.

摘要

抗菌光动力疗法(PDT)是一种很有前途的方法,可用于控制局部真菌感染或杀死环境中的真菌。本研究的主要目的是比较两种真菌(金龟子绿僵菌和构巢曲霉)在不同孵育和光照条件下用亚甲蓝(MB)和甲苯胺蓝(TBO)进行孢子光敏化的情况。检查的参数包括培养基、光敏剂(PS)浓度和光源。用 MB 和 TBO 进行 PDT 导致两种真菌的孢子不能完全失活。孢子失活率最高可达 99.7%,但使用 MB 或 TBO 进行任何一种处理都不足以达到 100%的杀菌效果。PDT 延迟了存活孢子的萌发。在暴露于光之前将孢子洗净以去除未结合的 PS,这大大降低了构巢曲霉的光敏化作用。金龟子绿僵菌孢子的减少幅度要小得多,这表明两种真菌的孢子与 MB 和 TBO 的相互作用方式不同。与绿色和黄色金龟子绿僵菌突变体相比,白色和紫色金龟子绿僵菌突变体的孢子受 PDT 的影响较小。与在 PBS 中发生的情况相反,当在马铃薯葡萄糖培养基中进行 PDT 时,未观察到 M. anisopliae 和 A. nidulans 孢子的光敏化作用。

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