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功能性海藻糖酶活性的缺乏增加了对伊曲康唑的易感性。

Lack of Functional Trehalase Activity in Increases Susceptibility to Itraconazole.

作者信息

Sánchez-Fresneda Ruth, Muñoz-Megías María Luz, Yagüe Genoveva, Solano Francisco, Maicas Sergi, Argüelles Juan Carlos

机构信息

Área de Microbiología, Facultad de Biología, Universidad de Murcia, 30100 Murcia, Spain.

Servicio de Microbiología Clínica, Hospital Universitario Virgen de la Arrixaca, IMIB, 30331 Murcia, Spain.

出版信息

J Fungi (Basel). 2022 Apr 5;8(4):371. doi: 10.3390/jof8040371.

Abstract

Central metabolic pathways may play a major role in the virulence of pathogenic fungi. Here, we have investigated the susceptibility of a mutant deficient in trehalase activity (Δ/Δ strain) to the azolic compounds fluconazole and itraconazole. A time-course exposure to itraconazole but not fluconazole induced a significant degree of cell killing in mutant cells compared to the parental strain. Flow cytometry determinations indicated that itraconazole was able to induce a marked production of endogenous ROS together with a simultaneous increase in membrane potential, these effects being irrelevant after fluconazole addition. Furthermore, only itraconazole induced a significant synthesis of endogenous trehalose. The recorded impaired capacity of mutant cells to produce structured biofilms was further increased in the presence of both azoles, with itraconazole being more effective than fluconazole. Our results in the opportunistic pathogen yeast reinforce the study of trehalose metabolism as an attractive therapeutic target and allow extending the hypothesis that the generation of internal oxidative stress may be a component of the antifungal action exerted by the compounds currently available in medical practice.

摘要

中央代谢途径可能在致病真菌的毒力中起主要作用。在此,我们研究了海藻糖酶活性缺陷型突变体(Δ/Δ菌株)对唑类化合物氟康唑和伊曲康唑的敏感性。与亲本菌株相比,对伊曲康唑而非氟康唑进行的时间进程暴露诱导突变体细胞出现显著程度的细胞杀伤。流式细胞术测定表明,伊曲康唑能够诱导内源性活性氧的显著产生,同时膜电位增加,添加氟康唑后这些效应不明显。此外,只有伊曲康唑诱导内源性海藻糖的显著合成。在两种唑类药物存在的情况下,突变体细胞形成结构化生物膜的能力受损进一步加剧,伊曲康唑比氟康唑更有效。我们在机会致病性酵母中的研究结果加强了将海藻糖代谢作为有吸引力的治疗靶点的研究,并支持了以下假设:内部氧化应激的产生可能是目前医学实践中可用化合物发挥抗真菌作用的一个组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95fb/9028276/2fda0d31e718/jof-08-00371-g001.jpg

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