首页> 美国卫生研究院文献>other >Fluconazole and Echinocandin Resistance of Candida glabrata Correlates Better with Antifungal Drug Exposure Rather than with MSH2 Mutator Genotype in a French Cohort of Patients Harboring Low Rates of Resistance
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Fluconazole and Echinocandin Resistance of Candida glabrata Correlates Better with Antifungal Drug Exposure Rather than with MSH2 Mutator Genotype in a French Cohort of Patients Harboring Low Rates of Resistance

机译:在法国人群中耐药率低的患者中光滑念珠菌对氟康唑和棘霉素的耐药性与抗真菌药物暴露相关性比与MSH2突变体基因型更好相关

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摘要

Candida glabrata is a major pathogenic yeast in humans that is known to rapidly acquire resistance to triazole and echinocandin antifungal drugs. A mutator genotype (MSH2 polymorphism) inducing a mismatch repair defect has been recently proposed to be responsible for resistance acquisition in C. glabrata clinical isolates. Our objectives were to evaluate the prevalence of antifungal resistance in a large cohort of patients in Saint-Louis hospital, Paris, France, some of whom were pre-exposed to antifungal drugs, as well as to determine whether MSH2 polymorphisms are associated with an increased rate of fluconazole or echinocandin resistance. We collected 268 isolates from 147 patients along with clinical data and previous antifungal exposure. Fluconazole and micafungin minimal inhibition concentrations (MICs) were tested, short tandem repeat genotyping was performed, and the MSH2 gene was sequenced. According to the European Committee on Antimicrobial Susceptibility breakpoints, 15.7% of isolates were resistant to fluconazole (MIC > 32 mg/L) and 0.7% were resistant to micafungin (MIC > 0.03 mg/L). A non-synonymous mutation within MSH2 occurred in 44% of the isolates, and 17% were fluconazole resistant. In comparison, fluconazole resistant isolates with no MSH2 mutation represented 15% (P = 0.65). MSH2 polymorphisms were associated with the short tandem repeat genotype. The rate of echinocandin resistance is low and correlates with prior exposure to echinocandin. The mutator genotype was not associated with enrichment in fluconazole resistance but instead corresponded to rare and specific genotypes.
机译:光滑念珠菌是人类主要的致病性酵母菌,已知能迅速获得对三唑和棘皮菌素抗真菌药的耐药性。最近有人提出了一种导致错配修复缺陷的突变基因型(MSH2多态性),可用于在光滑小球藻临床分离株中获得耐药性。我们的目标是评估法国巴黎圣路易医院一大批患者的抗真菌药耐药率,其中一些患者已预先接受抗真菌药,并确定MSH2多态性是否与增加的真菌感染有关氟康唑或棘皮菌素耐药率。我们收集了147例患者的268株分离株,以及临床数据和以前的抗真菌剂。测试了氟康唑和米卡芬净的最小抑菌浓度(MIC),进行了短串联重复基因分型,并对MSH2基因进行了测序。根据欧洲抗生素敏感性委员会的断点,分离株对氟康唑(MIC> 32 mg / L)有15.7%的抵抗力,对米卡芬净(MIC> 0.03 mg / L)有0.7%的抵抗力。 MSH2内的非同义突变发生在44%的分离物中,而17%对氟康唑耐药。相比之下,没有MSH2突变的氟康唑耐药菌株占15%(P = 0.65)。 MSH2多态性与短串联重复基因型相关。棘皮菌素耐药率低,并且与先前暴露于棘皮菌素相关。突变基因型与氟康唑耐药性的增加无关,而是对应于稀有和特定的基因型。

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