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首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Characterization of Giardia lamblia WB C6 clones resistant to nitazoxanide and to metronidazole.
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Characterization of Giardia lamblia WB C6 clones resistant to nitazoxanide and to metronidazole.

机译:贾第鞭毛虫WB C6克隆对硝唑尼特和甲硝唑具有抗性。

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摘要

OBJECTIVES: The characterization of Giardia lamblia WB C6 strains resistant to metronidazole and to the nitro-thiazole nitazoxanide [2-acetolyloxy-N-(5-nitro 2-thiazolyl) benzamide] as the parent compound of thiazolides, a novel class of anti-infective drugs with a broad spectrum of activities against a wide variety of helminths, protozoa and enteric bacteria. METHODS: Issuing from G. lamblia WB C6, we have generated two strains exhibiting resistance to nitazoxanide (strain C4) and to metronidazole (strain C5) and determined their susceptibilities to both drugs. Using quantitative RT-PCR, we have analysed the expression of genes that are potentially involved in resistance formation, namely genes encoding pyruvate oxidoreductases (POR1 and POR2), nitroreductase (NR), protein disulphide isomerases (PDI2 and PDI4) and variant surface proteins (VSPs; TSA417). We have cloned and expressed PDI2 and PDI4 in Escherichia coli. Using an enzyme assay based on the polymerization of insulin, we have determined the activities of both enzymes in the presence and absence of nitazoxanide. RESULTS: Whereas C4 was cross-resistant to nitazoxanide and to metronidazole, C5 was resistant only to metronidazole. Transcript levels of the potential targets for nitro-drugs POR1, POR2 and NR were only slightly modified, PDI2 transcript levels were increased in both resistant strains and PDI4 levels in C4. This correlated with the findings that the functional activities of recombinant PDI2 and PDI4 were inhibited by nitazoxanide. Moreover, drastic changes were observed in VSP gene expression. CONCLUSIONS: These results suggest that resistance formation in Giardia against nitazoxanide and metronidazole is linked, and possibly mediated by, altered gene expression in drug-resistant strains compared with non-resistant strains of Giardia.
机译:目的:鉴定贾第鞭毛虫WB C6菌株,该菌株对甲硝唑和硝基噻唑硝唑并[2-乙酰氧基-N-(5-硝基2-噻唑基)苯甲酰胺]具有抗性,是一类新型的抗-噻唑啉酮。具有针对多种蠕虫,原生动物和肠细菌的广泛活性的传染性药物。方法:从兰伯氏菌WB C6发出,我们产生了两个对硝唑尼特(C4菌株)和甲硝唑(C5菌株)具有抗性的菌株,并确定了它们对这两种药物的敏感性。使用定量RT-PCR,我们分析了可能参与抗性形成的基因的表达,即编码丙酮酸氧化还原酶(POR1和POR2),硝基还原酶(NR),蛋白质二硫键异构酶(PDI2和PDI4)和变异表面蛋白( VSP; TSA417)。我们已经在大肠杆菌中克隆并表达了PDI2和PDI4。使用基于胰岛素聚合的酶测定法,我们确定了在存在和不存在硝唑尼特的情况下两种酶的活性。结果:C4对硝唑尼特和甲硝唑具有交叉耐药性,而C5仅对甲硝唑具有耐药性。硝基药物POR1,POR2和NR的潜在靶标的转录水平仅被轻微修饰,抗性菌株中的PDI2转录水平均升高,而C4中的PDI4水平均升高。这与发现的结果一致:硝唑尼特抑制了重组PDI2和PDI4的功能活性。此外,在VSP基因表达中观察到急剧变化。结论:这些结果表明,贾第鞭毛虫对硝唑尼特和甲硝唑的抗药性与贾第鞭毛虫非耐药菌株相比,与耐药菌株的基因表达改变有关,并可能由其介导。

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