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泰国白千层油的抗真菌活性及其对氟康唑耐药临床分离株中流出泵基因表达的影响。

Antifungal Activity of Thai Cajuput Oil and Its Effect on Efflux-Pump Gene Expression in Fluconazole-Resistant Clinical Isolates.

作者信息

Keereedach Pitchayaphong, Hrimpeng Karnjana, Boonbumrung Khaemaporn

机构信息

Department of Transfusion Medicine and Clinical Microbiology, Faculty of Allied Health Sciences, Chulalongkorn University, Bangkok 10330, Thailand.

Department of Microbiology, Faculty of Science, Burapha University, Chonburi 20131, Thailand.

出版信息

Int J Microbiol. 2020 Nov 4;2020:5989206. doi: 10.1155/2020/5989206. eCollection 2020.

Abstract

Candidiasis caused by the fluconazole-resistant opportunistic pathogen is an intractable clinical problem that threatens immunocompromised or normal individuals. The most common mechanism of fluconazole resistance in is the failure of cells to accumulate the drug due to increased expression of the efflux proteins encoded by the 1, 2, and 1 genes. Because the number of current antifungal drugs is limited, it is necessary to develop new therapeutic strategies. This study aimed to evaluate the antifungal activity of Thai Cajuput oil, its synergism with fluconazole, and its effect on efflux-pump gene expression in fluconazole-resistant clinical isolates. Thus, we first detected the efflux-pump genes in fourteen resistant strains by PCR. The frequencies of the 1, 2, and 1 genes were 68.75%, 62.5%, and 87.5%, respectively, and these efflux-pump genes were distributed in three distinct patterns. Subsequently, the antifungal activity of Thai Cajuput oil was assessed by broth macrodilution and its synergism with fluconazole was evaluated by the checkerboard assay. The changes in the expression levels of 1, 2, and 1 after treatment with Thai Cajuput oil were analyzed by qRT-PCR. The MICs and MFCs of Thai Cajuput oil ranged from 0.31 to 1.25 l/ml and 0.63 to 1.25 l/ml, respectively, and its activity was defined as fungicidal activity. The MICs of the combination of Thai Cajuput oil and fluconazole were much lower than the MICs of the individual drugs. Interestingly, sub-MICs of Thai Cajuput oil significantly reduced the 1 expression level in resistant strains ( < 0.05). Our study suggests that Thai Cajuput oil can be used to create new potential combination therapies to combat the antifungal resistance of .

摘要

由耐氟康唑的机会性病原体引起的念珠菌病是一个棘手的临床问题,威胁着免疫功能低下或正常个体。中耐氟康唑最常见的机制是由于由1、2和1基因编码的外排蛋白表达增加,细胞无法积累药物。由于目前抗真菌药物的数量有限,有必要开发新的治疗策略。本研究旨在评估泰国白千层油的抗真菌活性、其与氟康唑的协同作用以及对耐氟康唑临床分离株中外排泵基因表达的影响。因此,我们首先通过PCR检测了14株耐药菌株中的外排泵基因。1、2和1基因的频率分别为68.75%、62.5%和87.5%,这些外排泵基因以三种不同模式分布。随后,通过肉汤稀释法评估泰国白千层油的抗真菌活性,并通过棋盘法评估其与氟康唑的协同作用。通过qRT-PCR分析用泰国白千层油处理后1、2和1表达水平的变化。泰国白千层油的MIC和MFC分别为0.31至1.25 l/ml和0.63至1.25 l/ml,其活性被定义为杀菌活性。泰国白千层油与氟康唑联合使用的MIC远低于各单药的MIC。有趣的是,泰国白千层油的亚抑菌浓度显著降低了耐药菌株中1的表达水平(<0.05)。我们的研究表明,泰国白千层油可用于创建新的潜在联合疗法来对抗的抗真菌耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d2/7803126/80d8c2d36bb4/ijmicro2020-5989206.001.jpg

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