Targets of photodyamic inactivation in fungal cells

A. Baptista, S. Núñez, A. A. Martin, M. Ribeiro
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Abstract

Photodynamic inactivation (PDI) has been reported to be effective to eradicate a wide variety of pathogens, including antimicrobial-resistant microorganisms. However, there are conflicting reports in the literature about the effect of growth phase on the susceptibility to PDI. The aim of this study was to identify the potential molecular targets of PDI on Candida albicans in exponential growth phase after PDI mediated by methylene blue (50μM) and exposure to a 660nm-LED (P=360mW). For this task, scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FT-IR) techniques were employed. Pre-irradiation time was set at 10min and exposure time was 15 min delivering a radiant exposure of 162 J/cm2 on a 24-well plate of about 2 cm2. Morphological analysis revealed cell damage after PDI. FT-IR predominantly showed degradation of functional groups related to C-O of deoxyribose; C-C of DNA; C-O stretching vibration of C-OH group of ribose-RNA; P-O stretching modes from the phosphodiester groups of nucleic acids; C=C, C=N, C=O, N=H proteins and amides. Previous studies from our group had demonstrated different targets on the same cells but in stationary growth phase. Therefore, we can conclude that PDI promoted damage to intracellular structures in fungal cells at exponential-phase growth and information on the susceptibility of different growth phases to PDI can be of great importance for the development of treatment strategies that would lead to inactivation of fungal cells in all possible phases of growth in a way that would turn the clinical PDI treatment effective and predictable.
真菌细胞光动力失活的靶点
据报道,光动力失活(PDI)可有效根除多种病原体,包括耐药微生物。然而,关于生长阶段对PDI易感性的影响,文献中有相互矛盾的报道。本研究的目的是在亚甲基蓝(50μM)介导PDI和暴露于660nm-LED (P=360mW)后,确定PDI对白色念珠菌指数生长阶段的潜在分子靶点。为了完成这项任务,使用了扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)技术。预照射时间为10min,照射时间为15min,在约2cm2的24孔板上照射162j /cm2。形态学分析显示PDI后细胞损伤。FT-IR主要显示脱氧核糖C-O相关官能团的降解;DNA的C-C;核糖- rna中C-OH基团的C-O伸缩振动核酸磷酸二酯基的P-O拉伸模式C=C, C=N, C=O, N=H的蛋白质和酰胺。我们课题组之前的研究表明,相同的细胞有不同的靶点,但处于固定生长阶段。因此,我们可以得出结论,PDI促进真菌细胞在指数期生长时的细胞内结构损伤,不同生长阶段对PDI的敏感性信息对于制定治疗策略非常重要,这些策略将导致真菌细胞在所有可能的生长阶段失活,从而使临床PDI治疗有效和可预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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