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真菌PCR计划和毛霉样真菌研究小组开展的实验室间分析,旨在改进血清中毛霉目DNA的定量PCR检测:向标准化又迈进了一步。

Interlaboratory assays from the fungal PCR Initiative and the Modimucor Study Group to improve qPCR detection of Mucorales DNA in serum: one more step toward standardization.

作者信息

Rocchi Steffi, Scherer Emeline, White P Lewis, Guitton Audrey, Alanio Alexandre, Botterel Françoise, Bougnoux Marie Elisabeth, Buitrago Maria José, Cogliati Massimo, Cornu Marjorie, Damiani Celine, Denis Julie, Dupont Damien, Fuchs Stefan, Gorton Rebecca, Haas Pieter-Jan, Hagen Ferry, Hare Rasmus, Iriart Xavier, Klaassen Corné H W, Lackner Michaela, Lengerova Martina, Melchers Willem J G, Morio Florent, Poirier Philippe, Springer Jan, Valot Stephane, Willinger Birgit, Mazzi Cristina, Cruciani Mario, Barnes Rosemary, Donnelly J Peter, Loeffler Jürgen, Millon Laurence

机构信息

Chrono-environnement UMR6249, CNRS, University of Franche-Comté, Besançon, Bourgogne-Franche-Comté, France.

Parasitology-Mycology Department, Besançon University Hospital, Besançon, Bourgogne-Franche-Comté, France.

出版信息

J Clin Microbiol. 2025 Feb 19;63(2):e0152524. doi: 10.1128/jcm.01525-24. Epub 2024 Dec 31.

Abstract

UNLABELLED

The aim of this study was to identify parameters influencing DNA extraction and PCR amplification efficiencies in an attempt to standardize Mucorales qPCR. The Fungal PCR Initiative Mucorales Laboratory Working Group distributed two panels of simulated samples to 26 laboratories: Panel A (six sera spiked with Mucorales DNA and one negative control serum) and Panel B (six Mucorales DNA extracts). Panel A underwent DNA extraction in each laboratory according to the local procedure and were sent to a central laboratory for testing using three different qPCR techniques: one in-house qPCR assay and two commercial assays (MucorGenius and Fungiplex). Panel B DNA extracts were PCR amplified in each laboratory using local procedures: nine in-house qPCR assays and two commercial kits (MucorGenius and MycoGENIE). All data were compiled and anonymously analyzed at the central laboratory. For Panel A, a total of six different automated platforms and five manual extraction methods were used. Positive rates were 64%, 70%, and 89%, for the MucorGenius, Fungiplex, and the in-house qPCR assay, respectively. Using a large volume of serum for DNA extraction provided the highest analytical sensitivity (82.5% for 1 mL compared with 62.7% for smaller volumes, < 0.01). For Panel B, five in-house qPCR assays and two commercial kits had >78% positivity. Using larger PCR input volumes (≥7 µL) was associated with the highest sensitivity at 95.5% compared to 58.3% when lower input volumes were used ( < 0.01). Using larger sample volumes for nucleic acid extraction and DNA template volumes for PCR amplification significantly improves the performance of Mucorales qPCR when testing serum.

IMPORTANCE

Mucormycosis is a life-threatening mold infection affecting immunosuppressed patients but also other patients with diabetes or trauma. Better survival is linked to shorter delays in diagnosis and treatment initiation. Detection of Mucorales-free DNA in serum or plasma using quantitative PCR allows a prompt diagnosis and earlier treatment. Several techniques and protocols of quantitative Mucorales PCR are used in Europe, and improving performance remains a common objective of laboratories participating in the fungal PCR Initiative Working Group. This study, which combined results from 26 laboratories in Europe, showed that the main parameters underpinning sensitivity are the preanalytical variables (volume of serum used for DNA extraction and DNA template volume), irrespective of the extraction platforms and qPCR assay/platform.

摘要

未标注

本研究的目的是确定影响DNA提取和PCR扩增效率的参数,以试图标准化毛霉目定量PCR。真菌PCR倡议毛霉目实验室工作组向26个实验室分发了两组模拟样本:A组(六份添加了毛霉目DNA的血清和一份阴性对照血清)和B组(六份毛霉目DNA提取物)。A组在每个实验室根据当地程序进行DNA提取,然后被送到一个中心实验室,使用三种不同的定量PCR技术进行检测:一种内部定量PCR检测方法和两种商业检测方法(MucorGenius和Fungiplex)。B组DNA提取物在每个实验室使用当地程序进行PCR扩增:九种内部定量PCR检测方法和两种商业试剂盒(MucorGenius和MycoGENIE)。所有数据在中心实验室进行汇总并匿名分析。对于A组,总共使用了六种不同的自动化平台和五种手动提取方法。MucorGenius、Fungiplex和内部定量PCR检测方法的阳性率分别为64%、70%和89%。使用大量血清进行DNA提取可提供最高的分析灵敏度(1 mL血清的灵敏度为82.5%,而较小体积血清的灵敏度为62.7%,P<0.01)。对于B组,五种内部定量PCR检测方法和两种商业试剂盒的阳性率>78%。使用较大的PCR输入体积(≥7 μL)与最高灵敏度相关,为95.5%,而使用较低输入体积时灵敏度为58.3%(P<0.01)。在检测血清时,使用较大的样本体积进行核酸提取和较大的DNA模板体积进行PCR扩增可显著提高毛霉目定量PCR的性能。

重要性

毛霉病是一种危及生命的霉菌感染,影响免疫抑制患者以及其他糖尿病或创伤患者。更好的生存与诊断和开始治疗的延迟缩短有关。使用定量PCR检测血清或血浆中毛霉目游离DNA可实现快速诊断和早期治疗。欧洲使用了几种定量毛霉目PCR技术和方案,提高性能仍然是参与真菌PCR倡议工作组的实验室的共同目标。这项结合了欧洲26个实验室结果的研究表明,影响灵敏度的主要参数是分析前变量(用于DNA提取的血清体积和DNA模板体积),与提取平台和定量PCR检测方法/平台无关。

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