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世界卫生组织推荐的中度复杂自动化核酸扩增检测技术用于检测结核病和利福平及异烟肼耐药性的可行性、易用性和操作特点。

Feasibility, Ease-of-Use, and Operational Characteristics of World Health Organization-Recommended Moderate-Complexity Automated Nucleic Acid Amplification Tests for the Detection of Tuberculosis and Resistance to Rifampicin and Isoniazid.

机构信息

Department of Molecular Medicine and Haematology, School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

FIND, the Global Alliance for Diagnostics, Geneva, Switzerland.

出版信息

J Mol Diagn. 2023 Jan;25(1):46-56. doi: 10.1016/j.jmoldx.2022.10.001. Epub 2022 Oct 13.

Abstract

Four moderate-complexity automated nucleic acid amplification tests for the diagnosis of tuberculosis are reported as having laboratory analytical and clinical performance similar to that of the Cepheid Xpert MTB/RIF assay. These assays are the Abbott RealTime MTB and RealTime MTB RIF/INH Resistance, Becton Dickinson MAX MDR-TB, the Hain Lifescience/Bruker FluoroType MTBDR, and the Roche cobas MTB and MTB RIF/INH assays. The study compared feasibility, ease of use, and operational characteristics of these assays/platforms. Manufacturer input was obtained for technical characteristics. Laboratory operators were requested to complete a questionnaire on the assays' ease of use. A time-in-motion analysis was also undertaken for each platform. For ease-of-use and operational requirements, the BD MAX MDR-TB assay achieved the highest scores (86% and 90%) based on information provided by the user and manufacturer, respectively, followed by the cobas MTB and MTB-RIF/INH assay (68% and 86%), the FluoroType MTBDR assay (67% and 80%), and the Abbott RT-MTB and RT MTB RIF/INH assays (64% and 76%). The time-in-motion analysis revealed that for 94 specimens, the RealTime MTB assay required the longest processing time, followed by the cobas MTB assay and the FluoroType MTBDR assay. The BD MAX MDR-TB assay required 4.6 hours for 22 specimens. These diagnostic assays exhibited different strengths and weaknesses that should be taken into account, in addition to affordability, when considering placement of a new platform.

摘要

四种中等复杂度的自动化核酸扩增检测方法被报道可用于诊断结核病,其实验室分析和临床性能与 Cepheid Xpert MTB/RIF 检测相当。这些检测方法包括 Abbott RealTime MTB 和 RealTime MTB RIF/INH 耐药性检测、Becton Dickinson MAX MDR-TB 检测、Hain Lifescience/Bruker FluoroType MTBDR 检测,以及 Roche cobas MTB 和 MTB RIF/INH 检测。本研究比较了这些检测方法/平台的可行性、易用性和操作特性。制造商提供了技术特性方面的信息。实验室操作人员被要求完成一份关于检测方法易用性的问卷。还对每个平台进行了时间运动分析。根据用户和制造商提供的信息,BD MAX MDR-TB 检测在易用性和操作要求方面获得了最高的评分(86%和 90%),其次是 cobas MTB 和 MTB-RIF/INH 检测(68%和 86%)、FluoroType MTBDR 检测(67%和 80%)和 Abbott RT-MTB 和 RT MTB RIF/INH 检测(64%和 76%)。时间运动分析显示,对于 94 个样本,RealTime MTB 检测所需的处理时间最长,其次是 cobas MTB 检测和 FluoroType MTBDR 检测。BD MAX MDR-TB 检测对 22 个样本需要 4.6 小时。除了可负担性之外,在考虑引入新平台时,这些诊断检测方法表现出不同的优缺点,这些因素都需要考虑进去。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d5/9830532/2fa372937cc9/gr1.jpg

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