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Efficient Identification of Clinically Relevant Candida Yeast Species by Use of an Assay Combining Panfungal Loop-Mediated Isothermal DNA Amplification with Hybridization to Species-Specific Oligonucleotide Probes▿

机译:通过结合泛真菌环介导的等温DNA扩增与特定物种寡核苷酸探针杂交的分析,有效鉴定临床相关的念珠菌酵母物种▿

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摘要

The occurrence of invasive mycoses has progressively increased in recent years. Yeasts of the genus Candida remain the leading etiologic agents of those infections. Early identification of opportunistic yeasts may contribute significantly to improved disease management and the selection of appropriate antifungal therapy. We developed a rapid and reliable molecular identification system for clinically relevant yeasts that makes use of nonspecific primers to amplify a region of the 26S rRNA gene, followed by reverse hybridization of the digoxigenin-labeled products to a panel of species-specific oligonucleotide probes arranged on a nylon membrane macroarray format. DNA amplification was achieved by the recently developed loop-mediated isothermal DNA amplification technology, a promising option for the development of improved laboratory diagnostic kits. The newly developed method was successful in distinguishing among the major clinically relevant yeasts associated with bloodstream infections by using simple, rapid, and cost-effective procedures and equipment.
机译:近年来,侵袭性真菌病的发生逐渐增加。念珠菌属的酵母仍然是这些感染的主要病因。早期发现机会性酵母可能会极大地改善疾病管理和选择合适的抗真菌治疗。我们开发了一种用于临床相关酵母的快速可靠的分子鉴定系统,该系统利用非特异性引物扩增26S rRNA基因的区域,然后将洋地黄毒苷标记的产物反向杂交至排列在其上的一组物种特异性寡核苷酸探针上尼龙膜大阵列格式。 DNA扩增是通过最近开发的环介导的等温DNA扩增技术实现的,这是开发改进的实验室诊断试剂盒的有希望的选择。新开发的方法通过使用简单,快速且经济高效的程序和设备成功地区分了与血液感染相关的主要临床相关酵母。

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