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利用从使用过的侧向流设备中提取的 RNA 进行狂犬病病毒的分子分析。

Molecular Analysis of Rabies Virus Using RNA Extracted from Used Lateral Flow Devices.

机构信息

Department of Microbiology, Faculty of Medicine, Oita University, Yufu, Oita, Japan.

School of Tropical Medicine and Global Health, Nagasaki University, Nagasaki, Nagasaki, Japan.

出版信息

J Clin Microbiol. 2023 Mar 23;61(3):e0154322. doi: 10.1128/jcm.01543-22. Epub 2023 Feb 22.

Abstract

Molecular analysis of rabies virus can provide accurate diagnosis and information on its genetic diversity. The transportation of rabies brain samples from remote areas to a central laboratory is challenging owing to biohazard risks and decomposability. We investigated the utility of used lateral flow devices (LFDs) for subsequent molecular analysis and assessed the necessary storage temperatures. Using RNA extracted from used LFD strips, we performed conventional reverse transcription-PCR (RT-PCR) using an LN34 primer set to amplify short fragments (165 bp) for rabies virus detection and the P1-304 primer set to amplify long fragments of the entire N gene amplicon (1,506 bp) for phylogenetic analysis. Among 71 used LFDs stored in a refrigerator and 64 used LFDs stored at room temperature, the LN34 assay showed high sensitivities (96.2% and 100%, respectively) for the diagnosis of rabies, regardless of the storage temperature. A significant reduction in the sensitivity of rabies diagnosis was observed when using the P1-304 primer set for used LFDs stored at room temperature compared to those stored at refrigeration temperature (20.9% versus 100%;  < 0.05). Subsequent sequencing and phylogenetic analysis were successfully performed using the amplicons generated by the P1-304 RT-PCR assays. Used LFDs are thus promising resources for rabies virus RNA detection and sequence analysis. Virus detection via RT-PCR, amplifying a short fragment, was possible regardless of the storage temperature of the used LFDs. However, refrigerated storage is recommended for RT-PCR amplification of long fragments for phylogenetic analysis.

摘要

狂犬病病毒的分子分析可为其提供准确的诊断和遗传多样性信息。由于生物危害风险和易分解性,将来自偏远地区的狂犬病脑组织样本运送到中心实验室具有挑战性。我们研究了使用过的侧向流动装置(LFD)用于后续分子分析的实用性,并评估了必要的储存温度。使用从使用过的 LFD 条带中提取的 RNA,我们使用 LN34 引物组进行常规逆转录-PCR(RT-PCR),以扩增短片段(165bp)用于狂犬病病毒检测,以及 P1-304 引物组用于扩增全长 N 基因扩增子的长片段(1506bp)用于系统发育分析。在冰箱中储存的 71 个用过的 LFD 和室温下储存的 64 个用过的 LFD 中,LN34 检测法对狂犬病的诊断具有很高的灵敏度(分别为 96.2%和 100%),无论储存温度如何。与冷藏温度相比,室温下储存的 P1-304 引物组用于使用过的 LFD 进行狂犬病诊断时,灵敏度显着降低(20.9%对 100%;<0.05)。使用 P1-304 RT-PCR 检测成功地进行了随后的测序和系统发育分析。因此,使用过的 LFD 是用于狂犬病病毒 RNA 检测和序列分析的有前途的资源。通过 RT-PCR 进行病毒检测,扩增短片段,无论使用过的 LFD 的储存温度如何都可以进行。但是,建议在冷藏下储存用于系统发育分析的长片段 RT-PCR 扩增。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2541/10035306/e444e5b31da5/jcm.01543-22-f001.jpg

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