Streamlined detection of Nipah virus antibodies using a split NanoLuc biosensor.

IF 8.4 2区 医学 Q1 IMMUNOLOGY Emerging Microbes & Infections Pub Date : 2024-12-01 Epub Date: 2024-09-09 DOI:10.1080/22221751.2024.2398640
Éric Bergeron, Cheng-Feng Chiang, Michael K Lo, Elif Karaaslan, Syed Moinuddin Satter, Mohammed Ziaur Rahman, Mohammad Enayet Hossain, Wasik Rahman Aquib, Dewan Imtiaz Rahman, Subyeta Binte Sarwar, Joel M Montgomery, John D Klena, Christina F Spiropoulou
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Abstract

Nipah virus (NiV) is an emerging zoonotic RNA virus that can cause fatal respiratory and neurological diseases in animals and humans. Accurate NiV diagnostics and surveillance tools are crucial for the identification of acute and resolved infections and to improve our understanding of NiV transmission and circulation. Here, we have developed and validated a split NanoLuc luciferase NiV glycoprotein (G) biosensor for detecting antibodies in clinical and animal samples. This assay is performed by simply mixing reagents and measuring luminescence, which depends on the complementation of the split NanoLuc luciferase G biosensor following its binding to antibodies. This anti-NiV-G "mix-and-read" assay was validated using the WHO's first international standard for anti-NiV antibodies and more than 700 serum samples from the NiV-endemic country of Bangladesh. Anti-NiV antibodies from survivors persisted for at least 8 years according to both ⍺NiV-G mix-and-read and NiV neutralization assays. The ⍺NiV-G mix-and-read assay sensitivity (98.6%) and specificity (100%) were comparable to anti-NiV IgG ELISA performance but failed to detect anti-NiV antibodies in samples collected less than a week following the appearance of symptoms. Overall, the anti-NiV-G biosensor represents a simple, fast, and reliable tool that could support the expansion of NiV surveillance and retrospective outbreak investigations.

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使用分体式 NanoLuc 生物传感器简化尼帕病毒抗体检测。
摘要尼帕病毒(NiV)是一种新出现的人畜共患 RNA 病毒,可导致动物和人类患上致命的呼吸道和神经系统疾病。准确的 NiV 诊断和监测工具对于识别急性和复发性感染以及提高我们对 NiV 传播和循环的了解至关重要。在此,我们开发并验证了一种用于检测临床和动物样本中抗体的分体式 NanoLuc 荧光素酶 NiV 糖蛋白(G)生物传感器。这种检测方法只需混合试剂并测量发光即可,而发光则取决于分体式 NanoLuc 荧光素酶 G 生物传感器与抗体结合后的互补性。这种抗NiV-G "混合-读取 "化验使用世界卫生组织的首个抗NiV抗体国际标准和来自NiV流行国孟加拉国的700多份血清样本进行了验证。根据 "NiV-G 混合-读取 "检测法和 NiV 中和检测法,幸存者的抗 NiV 抗体可持续至少 8 年。NiV-G混合和读取检测法的灵敏度(98.6%)和特异性(100%)与抗NiV IgG ELISA法相当,但在症状出现后不到一周采集的样本中无法检测到抗NiV抗体。总之,抗NiV-G生物传感器是一种简单、快速、可靠的工具,可为扩大NiV监测和疫情回顾性调查提供支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Emerging Microbes & Infections
Emerging Microbes & Infections IMMUNOLOGY-MICROBIOLOGY
CiteScore
26.20
自引率
2.30%
发文量
276
审稿时长
20 weeks
期刊介绍: Emerging Microbes & Infections is a peer-reviewed, open-access journal dedicated to publishing research at the intersection of emerging immunology and microbiology viruses. The journal's mission is to share information on microbes and infections, particularly those gaining significance in both biological and clinical realms due to increased pathogenic frequency. Emerging Microbes & Infections is committed to bridging the scientific gap between developed and developing countries. This journal addresses topics of critical biological and clinical importance, including but not limited to: - Epidemic surveillance - Clinical manifestations - Diagnosis and management - Cellular and molecular pathogenesis - Innate and acquired immune responses between emerging microbes and their hosts - Drug discovery - Vaccine development research Emerging Microbes & Infections invites submissions of original research articles, review articles, letters, and commentaries, fostering a platform for the dissemination of impactful research in the field.
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