An update on current and novel molecular diagnostics for the diagnosis of invasive fungal infections.

IF 3.6 3区 医学 Q1 PATHOLOGY
Jeffrey D Jenks, P Lewis White, Sarah E Kidd, Tyler Goshia, Stephanie I Fraley, Martin Hoenigl, George R Thompson
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引用次数: 0

Abstract

Background: Invasive fungal infections cause millions of infections annually, but diagnosis remains challenging. There is an increased need for low-cost, easy to use, highly sensitive and specific molecular assays that can differentiate between colonized and pathogenic organisms from different clinical specimens.

Areas covered: We reviewed the literature evaluating the current state of molecular diagnostics for invasive fungal infections, focusing on current and novel molecular tests such as polymerase chain reaction (PCR), digital PCR, high-resolution melt (HRM), and metagenomics/next generation sequencing (mNGS).

Expert opinion: PCR is highly sensitive and specific, although performance can be impacted by prior/concurrent antifungal use. PCR assays can identify mutations associated with antifungal resistance, non-Aspergillus mold infections, and infections from endemic fungi. HRM is a rapid and highly sensitive diagnostic modality that can identify a wide range of fungal pathogens, including down to the species level, but multiplex assays are limited and HRM is currently unavailable in most healthcare settings, although universal HRM is working to overcome this limitation. mNGS offers a promising approach for rapid and hypothesis-free diagnosis of a wide range of fungal pathogens, although some drawbacks include limited access, variable performance across platforms, the expertise and costs associated with this method, and long turnaround times in real-world settings.

用于诊断侵袭性真菌感染的当前和新的分子诊断的更新。
背景:侵袭性真菌感染每年导致数百万人感染,但诊断仍然具有挑战性。人们越来越需要低成本、易于使用、高灵敏度和特异性的分子测定法,以区分来自不同临床标本的定植生物和病原生物。涵盖领域:我们回顾了评估侵袭性真菌感染分子诊断现状的文献,重点关注当前和新的分子检测,如聚合酶链式反应(PCR)、数字PCR、高分辨率熔体(HRM)和宏基因组学/下一代测序(mNGS)。专家意见:PCR是高度敏感和特异的,尽管先前/同时使用抗真菌药物可能会影响其性能。PCR检测可以识别与抗真菌耐药性、非曲霉菌感染和地方真菌感染相关的突变。HRM是一种快速、高灵敏度的诊断模式,可以识别广泛的真菌病原体,包括物种水平,但多重检测是有限的,目前在大多数医疗环境中都无法使用HRM,尽管通用HRM正在努力克服这一限制。mNGS为广泛的真菌病原体的快速和无假设诊断提供了一种很有前途的方法,尽管一些缺点包括访问受限、跨平台的性能可变、与该方法相关的专业知识和成本,以及在现实世界中的周转时间长。
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来源期刊
CiteScore
6.60
自引率
0.00%
发文量
71
审稿时长
1 months
期刊介绍: Expert Review of Molecular Diagnostics (ISSN 1473-7159) publishes expert reviews of the latest advancements in the field of molecular diagnostics including the detection and monitoring of the molecular causes of disease that are being translated into groundbreaking diagnostic and prognostic technologies to be used in the clinical diagnostic setting. Each issue of Expert Review of Molecular Diagnostics contains leading reviews on current and emerging topics relating to molecular diagnostics, subject to a rigorous peer review process; editorials discussing contentious issues in the field; diagnostic profiles featuring independent, expert evaluations of diagnostic tests; meeting reports of recent molecular diagnostics conferences and key paper evaluations featuring assessments of significant, recently published articles from specialists in molecular diagnostic therapy. Expert Review of Molecular Diagnostics provides the forum for reporting the critical advances being made in this ever-expanding field, as well as the major challenges ahead in their clinical implementation. The journal delivers this information in concise, at-a-glance article formats: invaluable to a time-constrained community.
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