Evaluation of an Electrochemiluminescence Assay for the Rapid Detection of Ricin Toxin.

IF 2.1 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Health Security Pub Date : 2024-09-01 DOI:10.1089/hs.2023.0160
Gowri Manickam, Christine A Pillai, Nagarajan Thirunavukkarasu, Segaran P Pillai, Julie R Avila, David Hodge, Kevin Anderson, Shashi Sharma
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Abstract

In this article, we detail a comprehensive laboratory evaluation of an immunoassay for the rapid detection of ricin using the Meso Scale Diagnostics Sector PR2 Model 1800. For the assay evaluation, we used inclusivity, exclusivity, and informational panels comprised of extracts of 35 near-neighbor plant cultivar-extracts, 66 lectins, 26 white powders, 16 closely related toxins and proteins/toxoids, and a pool of 30 BioWatch filter extracts. The results show that the Meso Scale Diagnostics ricin detection assay exhibits good sensitivity and specificity with a limit of detection of 1.2 ng/mL. However, the dynamic range of the assay for the quantitation of ricin was limited. We observed a hook effect at higher ricin concentrations, which can lead to potential false negative results. A modification of the assay protocol that incorporates extra wash steps can decrease the hook effect and the potential for false negative results.

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评估用于快速检测蓖麻毒素的电化学发光测定法。
在这篇文章中,我们详细介绍了使用 Meso Scale Diagnostics Sector PR2 1800 型快速检测蓖麻毒素的免疫测定的综合实验室评估。在检测评估中,我们使用了由 35 种近缘植物栽培种提取物、66 种凝集素、26 种白粉、16 种密切相关的毒素和蛋白质/类毒素以及 30 种 BioWatch 过滤器提取物组成的包容性、排他性和信息面板。结果表明,Meso Scale Diagnostics 的蓖麻毒素检测化验具有良好的灵敏度和特异性,检测限为 1.2 纳克/毫升。但是,该检测方法定量蓖麻毒素的动态范围有限。在蓖麻毒素浓度较高时,我们观察到钩状效应,这可能导致假阴性结果。修改化验方案,加入额外的洗涤步骤,可以减少钩状效应和出现假阴性结果的可能性。
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来源期刊
Health Security
Health Security PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-
CiteScore
4.80
自引率
6.10%
发文量
70
期刊介绍: Health Security is a peer-reviewed journal providing research and essential guidance for the protection of people’s health before and after epidemics or disasters and for ensuring that communities are resilient to major challenges. The Journal explores the issues posed by disease outbreaks and epidemics; natural disasters; biological, chemical, and nuclear accidents or deliberate threats; foodborne outbreaks; and other health emergencies. It offers important insight into how to develop the systems needed to meet these challenges. Taking an interdisciplinary approach, Health Security covers research, innovations, methods, challenges, and ethical and legal dilemmas facing scientific, military, and health organizations. The Journal is a key resource for practitioners in these fields, policymakers, scientific experts, and government officials.
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