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Recent trends in molecular diagnostics of yeast infections: from PCR to NGS

机译:酵母感染分子诊断的最新趋势:从PCR到NGS

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摘要

The incidence of opportunistic yeast infections in humans has been increasing over recent years. These infections are difficult to treat and diagnose, in part due to the large number and broad diversity of species that can underlie the infection. In addition, resistance to one or several antifungal drugs in infecting strains is increasingly being reported, severely limiting therapeutic options and showcasing the need for rapid detection of the infecting agent and its drug susceptibility profile. Current methods for species and resistance identification lack satisfactory sensitivity and specificity, and often require prior culturing of the infecting agent, which delays diagnosis. Recently developed high-throughput technologies such as next generation sequencing or proteomics are opening completely new avenues for more sensitive, accurate and fast diagnosis of yeast pathogens. These approaches are the focus of intensive research, but translation into the clinics requires overcoming important challenges. In this review, we provide an overview of existing and recently emerged approaches that can be used in the identification of yeast pathogens and their drug resistance profiles. Throughout the text we highlight the advantages and disadvantages of each methodology and discuss the most promising developments in their path from bench to bedside.
机译:近年来,人类的机会酵母菌感染的发病率一直在增加。这些感染难以治疗和诊断,部分原因是可以利于感染的大量和广泛的多样性。此外,越来越多地报道了对感染菌株的一种或几种抗真菌药物的抗性药物,严重限制了治疗选择,并展示了快速检测感染剂及其药物敏感性曲线的需求。目前的物种和抗性鉴定方法缺乏令人满意的敏感性和特异性,并且通常需要先前培养感染剂,其延迟诊断。最近开发的高吞吐量技术,如下一代测序或蛋白质组学正在全新的途径开放,以便更敏感,准确,快速诊断酵母病原体。这些方法是集约化研究的重点,但翻译进入诊所需要克服的重要挑战。在本次审查中,我们提供了可用于鉴定酵母病原体及其耐药性曲线的现有和最近出现的方法的概述。在整个文本中,我们突出了每种方法的优缺点,并讨论从长凳到床边的道路上最有希望的发展。

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  • 来源
    《FEMS Microbiology Reviews》 |2019年第5期|共31页
  • 作者单位

    Barcelona Inst Sci &

    Technol See Collaborators Sect Dr Aiguader 88 Barcelona 08003 Spain;

    Westerdijk Fungal Biodivers Inst NL-3584 CT Utrecht Netherlands;

    Westerdijk Fungal Biodivers Inst NL-3584 CT Utrecht Netherlands;

    Univ Coll Dublin Sch Biomed &

    Biomol Sci Dublin Ireland;

    Univ Aberdeen MRC Ctr Med Mycol Inst Med Sci Foresterhill Aberdeen Scotland;

    QVQ Holding BV Yalelaan 1 Utrecht Netherlands;

    BIST Bioinformat &

    Genom Programme CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Univ Valencia Biotechvana Calle Catedrat Agustin Escardino 9 Sci Pk Valencia 46980 Spain;

    HKI Dept Microbial Pathogen Mechanisms Jena Germany;

    BIST Bioinformat &

    Genom Programme CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Bruker Daltonik GmbH Fahrenheitstr 4 D-28359 Bremen Germany;

    Med Univ Innsbruck Div Hyg &

    Med Microbiol Schopfstr 41 A-6020 Innsbruck Austria;

    Med Univ Innsbruck Div Hyg &

    Med Microbiol Schopfstr 41 A-6020 Innsbruck Austria;

    Univ Valencia Biotechvana Calle Catedrat Agustin Escardino 9 Sci Pk Valencia 46980 Spain;

    BIST Bioinformat &

    Genom Programme CRG Dr Aiguader 88 Barcelona 08003 Spain;

    Univ Aberdeen MRC Ctr Med Mycol Inst Med Sci Foresterhill Aberdeen Scotland;

    Univ Coll Dublin Sch Biomed &

    Biomol Sci Dublin Ireland;

    HKI Dept Microbial Pathogen Mechanisms Jena Germany;

    Med Univ Innsbruck Div Hyg &

    Med Microbiol Schopfstr 41 A-6020 Innsbruck Austria;

    Univ Ghent Lab Bacteriol Res Dept Clin Chem Microbiol &

    Immunol Fac Med &

    Hlth Sci Flanders Belgium;

    QVQ Holding BV Yalelaan 1 Utrecht Netherlands;

    Bruker Daltonik GmbH Fahrenheitstr 4 D-28359 Bremen Germany;

    Westerdijk Fungal Biodivers Inst NL-3584 CT Utrecht Netherlands;

    Univ Ghent Lab Bacteriol Res Dept Clin Chem Microbiol &

    Immunol Fac Med &

    Hlth Sci Flanders Belgium;

    Univ Amsterdam IBED NL-1012 WX Amsterdam Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    yeast pathogens; diagnosis; Candida; candidemia; sequencing; proteomics;

    机译:酵母病原体;诊断;念珠菌;念珠菌;测序;蛋白质组学;

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