Suppr超能文献

检测氟康唑耐药尿念珠菌分离株中的 ERG11 基因。

Detection of ERG11 gene in fluconazole resistant urinary candida isolates.

机构信息

Department of Microbiology, Infection Prevention & Control Unit, Theodor Bilharz Research Institute, Giza 12411, Egypt.

Department of Microbiology, Medicine Program, Batterjee Medical College, Jeddah 21442, Saudi Arabia.

出版信息

Egypt J Immunol. 2022 Oct;29(4):134-147.

Abstract

Candida species resistant to fluconazole and voriconazole were screened for the presence of ERG11gene by polymerase chain reaction (PCR). Also, the association of this gene with the demonstration of Candida virulence factors; biofilm formation, phospholipase and proteinases activities were studied. A total of 61 Candida isolates were collected from urine specimens. Candida species were identified by API 20 C Aux test. Extracellular phospholipase, secretory aspartyl proteinase and biofilm formation were determined. ERG11 gene was detected by PCR. C. albicans was identified in 34.5%, C. glabrata in 29.5% and C. tropicalis and C. krusei in 18% each. Candida species was resistant to fluconazole and voriconazole in 55.7% and 27.9%, respectively. Seventeen (50%) of fluconazole resistant Candida isolates were sensitive to voriconazole. The most frequently Candida species revealed fluconazole resistance were C. glabrata (47.1%), C. krusei (29.4%), and C. tropicalis and C. albicans (11.8% each). Biofilm formation, phospholipase and proteinase activity were determined in 41.2%, 67.6% and 35.3% of fluconazole resistant Candida isolates, respectively. Erg 11 gene was determined in 82.4% of fluconazole resistant Candida isolates and prominent in C. glabrata (93.75%), followed by C. krusei (90%), C. tropicalis (75%) and C. albicans (25%). Erg 11 gene was detected in 64.7% (11/17) of fluconazole resistant-voriconazole sensitive Candida isolates. Regarding, correlation of Erg11 gene positivity and virulence factors among fluconazole resistant Candida isolates, 34.5% exhibited biofilm formation and 62.1% and 31% showed phospholipase and proteinase activities, respectively. There were statistically significant difference concerning the association of proteinase activities and Erg 11 gene expression among fluconazole resistance Candida isolates (P=0.04). The study emphasizes the high prevalence of Erg11 gene among fluconazole resistant Candida species. There was association between the proteinase activity, fluconazole resistance and the presence of Erg11 among Candida species. Voriconazole maintains better activity towards Candida species and represent an alternative therapy.

摘要

采用聚合酶链反应(PCR)方法对耐氟康唑和伏立康唑的念珠菌进行 ERG11 基因筛选。此外,还研究了该基因与念珠菌毒力因子的关系,包括生物膜形成、磷脂酶和蛋白酶活性。

从尿液标本中收集了 61 株念珠菌分离株。采用 API 20 C 辅助试验鉴定念珠菌种。测定细胞外磷脂酶、分泌天冬氨酸蛋白酶和生物膜形成。采用 PCR 检测 ERG11 基因。鉴定出 34.5%的白色念珠菌、29.5%的光滑念珠菌、18%的热带念珠菌和克柔念珠菌。

氟康唑和伏立康唑耐药率分别为 55.7%和 27.9%。17 株(50%)氟康唑耐药的念珠菌对伏立康唑敏感。最常出现氟康唑耐药的念珠菌是光滑念珠菌(47.1%)、克柔念珠菌(29.4%)和热带念珠菌和白色念珠菌(各 11.8%)。生物膜形成、磷脂酶和蛋白酶活性分别在 41.2%、67.6%和 35.3%的氟康唑耐药念珠菌中检测到。在 82.4%的氟康唑耐药念珠菌中检测到 erg11 基因,在光滑念珠菌中最为突出(93.75%),其次是克柔念珠菌(90%)、热带念珠菌(75%)和白色念珠菌(25%)。在 17 株氟康唑耐药-伏立康唑敏感的念珠菌中,有 64.7%(11/17)检测到 erg11 基因。

关于氟康唑耐药念珠菌中 erg11 基因阳性与毒力因子的相关性,有 34.5%表现出生物膜形成,62.1%和 31%分别显示出磷脂酶和蛋白酶活性。在氟康唑耐药念珠菌中,蛋白酶活性与 erg11 基因表达之间存在统计学显著差异(P=0.04)。

该研究强调了氟康唑耐药念珠菌中 erg11 基因的高流行率。在念珠菌种中,蛋白酶活性、氟康唑耐药性与 erg11 基因的存在之间存在关联。伏立康唑对念珠菌种具有更好的活性,是一种替代治疗方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验