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用于淋巴细胞性脉络丛脑膜炎病毒滴定的半功能性定量流式细胞术检测

Semi-Functional Quantitative Flow Cytometry Assay for Lymphocytic Choriomeningitis Virus Titration.

作者信息

Ban Young Ho, Ha Sang-Jun

机构信息

Department of Biochemistry, College of Life Science & Biotechnology, Yonsei University Seoul 03722, Korea.

出版信息

Immune Netw. 2017 Oct;17(5):307-316. doi: 10.4110/in.2017.17.5.307. Epub 2017 Oct 24.

Abstract

Quantitative PCR and plaque assay are powerful virological techniques used to measure the load of defective or infectious virus in mouse and human. However, these methods display limitations such as cross contamination and long run-time. Here, we describe a novel technique termed as semi-functional quantitative flow cytometry (SFQF) for the accurate estimation of the quantity of infectious lymphocytic choriomeningitis virus (LCMV). LCMV titration method using flow cytometry was previously developed but has technical shortcomings, owing to the less optimized parameters such as cell overgrowth, plate scale, and detection threshold. Therefore, we first established optimized conditions for SFQF assay using LCMV nucleoprotein (NP)-specific antibody to evaluate the threshold of the virus detection range in the plaque assay. We subsequently demonstrated that the optimization of the method increased the sensitivity of virus detection. We revealed several new advantages of SFQF assay, which overcomes some of the previously contentious points, and established an upgraded version of the previously reported flow cytometric titration assay. This method extends the detection scale to the level of single cell, allowing extension of its application for detection of infected cells and their phenotypic analysis. Thus, SFQF assay may serve as an alternative analytical tool for ensuring the reliability of LCMV titration and can be used with other types of viruses using target-specific antibodies.

摘要

定量聚合酶链反应(PCR)和蚀斑测定法是用于测量小鼠和人类体内缺陷病毒或感染性病毒载量的强大病毒学技术。然而,这些方法存在诸如交叉污染和检测时间长等局限性。在此,我们描述了一种名为半功能性定量流式细胞术(SFQF)的新技术,用于准确估算感染性淋巴细胞性脉络丛脑膜炎病毒(LCMV)的数量。此前已开发出使用流式细胞术的LCMV滴定方法,但由于细胞过度生长、平板规模和检测阈值等参数未得到充分优化,该方法存在技术缺陷。因此,我们首先使用LCMV核蛋白(NP)特异性抗体建立了SFQF测定的优化条件,以评估蚀斑测定中病毒检测范围的阈值。随后,我们证明该方法的优化提高了病毒检测的灵敏度。我们揭示了SFQF测定的几个新优势,克服了一些先前存在争议的问题,并建立了先前报道的流式细胞术滴定测定的升级版。该方法将检测规模扩展到单细胞水平,使其可用于检测感染细胞及其表型分析。因此,SFQF测定可作为确保LCMV滴定可靠性的替代分析工具,并可使用靶标特异性抗体与其他类型的病毒一起使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b02/5662780/9fccd5dc1470/in-17-307-g001.jpg

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