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柠檬显示出对临床分离株具有强大的体内和体外抗真菌潜力。

Lem. Displays a Strong In Vivo and In Vitro Antifungal Potential against Clinical Isolates.

作者信息

Alqahtani Moneerah J, Elekhnawy Engy, Negm Walaa A, Mahgoub Sebaey, Hussein Ismail A

机构信息

Department of Pharmacognosy, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.

Department of BioMolecular Sciences, Division of Pharmacognosy, School of Pharmacy, University of Mississippi, Oxford, MS 38677, USA.

出版信息

J Fungi (Basel). 2022 May 18;8(5):521. doi: 10.3390/jof8050521.

Abstract

Recently, has been recognized as one of the most common fungal species that is highly associated with invasive candidiasis. Its spread could be attributed to its increasing resistance to antifungal drugs. Thus, there is a high need for safer and more efficient therapeutic alternatives such as plant extracts. Here, we investigated the antifungal potential of leaves methanol extract (EVME) against clinical isolates. Tentative phytochemical identification of 51 metabolites was conducted in EVME using LC-MS/MS. EVME demonstrated antifungal activity with minimum inhibitory concentrations that ranged from 32 to 256 µg/mL. The mechanism of the antifungal action was studied by investigating the impact of EVME on nucleotide leakage. Additionally, a sorbitol bioassay was performed, and we found that EVME affected the fungal cell wall. In addition, the effect of EVME was elucidated on the efflux activity of isolates using acridine orange assay and quantitative real-time PCR. EVME resulted in downregulation of the expression of the efflux pump genes , , and in the tested isolates with percentages of 33.33%, 41.67%, and 33.33%, respectively. Moreover, we investigated the in vivo antifungal activity of EVME using a murine model with systemic infection. The fungal burden was determined in the kidney tissues. Histological and immunohistochemical studies were carried out to investigate the effect of EVME. We noticed that EVME reduced the congestion of the glomeruli and tubules of the kidney tissues of the rats infected with . Furthermore, it decreased both the proinflammatory cytokine tumor necrosis factor-alpha and the abnormal collagen fibers. Our results reveal, for the first time, the potential in vitro (by inhibition of the efflux activity) and in vivo (by decreasing the congestion and inflammation of the kidney tissues) antifungal activity of EVME against isolates.

摘要

最近,已被确认为与侵袭性念珠菌病高度相关的最常见真菌物种之一。其传播可能归因于其对抗真菌药物的耐药性不断增加。因此,迫切需要更安全、更有效的治疗替代品,如植物提取物。在此,我们研究了[植物名称]叶甲醇提取物(EVME)对[真菌名称]临床分离株的抗真菌潜力。使用液相色谱-串联质谱法(LC-MS/MS)对EVME中的51种代谢物进行了初步植物化学鉴定。EVME表现出抗真菌活性,最低抑菌浓度范围为32至256µg/mL。通过研究EVME对核苷酸泄漏的影响来探讨其抗真菌作用机制。此外,进行了山梨醇生物测定,我们发现EVME影响真菌细胞壁。此外,使用吖啶橙测定法和定量实时聚合酶链反应(qRT-PCR)阐明了EVME对[真菌名称]分离株外排活性的影响。EVME导致受试分离株中[外排泵基因名称1]、[外排泵基因名称2]和[外排泵基因名称3]的表达下调,下调百分比分别为33.33%、41.67%和33.33%。此外,我们使用系统性感染的小鼠模型研究了EVME的体内抗真菌活性。测定了肾脏组织中的真菌负荷。进行了组织学和免疫组织化学研究以探讨EVME的作用。我们注意到,EVME减轻了感染[真菌名称]的大鼠肾脏组织中肾小球和肾小管的充血。此外,它降低了促炎细胞因子肿瘤坏死因子-α以及异常胶原纤维。我们的结果首次揭示了EVME对[真菌名称]分离株的体外(通过抑制外排活性)和体内(通过减轻肾脏组织的充血和炎症)抗真菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bf0/9146621/8f40a200311e/jof-08-00521-g001.jpg

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