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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Berberine Antifungal Activity in Fluconazole-Resistant Pathogenic Yeasts: Action Mechanism Evaluated by Flow Cytometry and Biofilm Growth Inhibition in Candida spp.
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Berberine Antifungal Activity in Fluconazole-Resistant Pathogenic Yeasts: Action Mechanism Evaluated by Flow Cytometry and Biofilm Growth Inhibition in Candida spp.

机译:耐氟康唑的致病性酵母中的小ber碱抗真菌活性:通过流式细胞术和生物膜生长抑制评价念珠菌的作用机理。

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摘要

The incidence of fungal infections and, in particular, the incidence of fungal antibiotic resistance, which is associated with biofilm formation, have significantly increased, contributing to morbidity and mortality. Thus, new therapeutic strategies need to be developed. In this context, natural products have emerged as a major source of possible antifungal agents. Berberine is a pro-toberberine-type isoquinoline alkaloid isolated from the roots, rhizomes, and stem bark of natural herbs, such as Berberis aquifolium, Berberis vulgaris, Berberis aristata, and Hydrastis canadensis, and of Phellodendron amurense. Berberine has been proven to have broad antibacterial and antifungal activity. In the present study, the potential antifungal effect of berberine against fluconazole-resistant Candida and Cryptococcus neoformans strains, as well as against the biofilm form of Candida spp., was assessed. The antifungal effect of berberine was determined by a broth microdilution method (the M27-A3 method of the Clinical and Laboratory Standards Institute) and flow cytometry techniques, in which the probable mechanism of action of the compound was also assessed. For biofilm assessment, a colorimetric 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay was used to determine the susceptibility of sessile cells. The isolates used in the study belonged to the Laboratory of Bioprospection and Experiments in Yeast (LABEL) of the Federal University of Ceara. After 24 and 72 h, fluconazole-resistant Candida and Cryptococcus neoformans strains showed berberine MICs equal to 8 mu g/ml and 16 mu g/ml, respectively. Cytometric analysis showed that treatment with berberine caused alterations to the integrity of the plasma and mitochondrial membranes and DNA damage, which led to cell death, probably by apoptosis. Assessment of biofilm-forming isolates after treatment showed statistically significant reductions in biofilm cell activity (P< 0.001).
机译:真菌感染的发生率,特别是与生物膜形成有关的真菌抗生素抗性的发生率显着增加,从而导致发病率和死亡率增加。因此,需要开发新的治疗策略。在这种情况下,天然产物已成为可能的抗真菌剂的主要来源。小ber碱是一种从小herbs碱的根,根茎和茎皮中分离出来的小to碱型异喹啉碱生物碱,例如天然小Ber,小Ber,小,、加拿大水Hy和黄柏。小ber碱已被证明具有广泛的抗菌和抗真菌活性。在本研究中,评估了小ber碱对耐氟康唑的念珠菌和新隐隐球菌菌株以及念珠菌生物膜形式的潜在抗真菌作用。小a碱的抗真菌作用通过肉汤微稀释法(临床和实验室标准协会的M27-A3方法)和流式细胞仪技术确定,其中还评估了该化合物的可能作用机理。对于生物膜评估,使用比色的3-(4,5-二甲基-2-噻唑基)-2,5-二苯基-2H-溴化四氮唑(MTT)测定法来确定固着细胞的敏感性。该研究中使用的分离物属于塞阿拉联邦大学酵母生物勘探与实验实验室(LABEL)。 24小时和72小时后,耐氟康唑的念珠菌和新型隐球菌菌株的黄连素MIC分别等于8μg/ ml和16μg/ ml。细胞计数分析表明,小碱处理引起血浆和线粒体膜完整性的改变以及DNA损伤,从而可能导致细胞死亡,从而导致细胞死亡。处理后对生物膜形成分离物的评估显示,生物膜细胞活性明显降低(P <0.001)。

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