综述或非传感器论文 2009 非传感器论文

Rapid detection of H5N1 subtype influenza viruses by antigen capture enzyme-linked immunosorbent assay using H5- and N1-specific monoclonal antibodies.

Clinical and vaccine immunology : CVI Ho HT, Qian HL, He F, Meng T, Szyporta M, Prabhu N, Prabakaran M, Chan KP, Kwang J
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Rapid detection of H5N1 subtype influ... 传感器构成示意图

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传感器类型

综述或非传感器论文

检测对象

H5N1亚型流感病毒(H5N1 influenza virus);样品基质:鸡胚尿囊液、MDCK细胞培养上清(临床或环境样品为潜在应用)

检测原理

本方法为双抗体夹心抗原捕获ELISA。96孔板以碳酸缓冲液包被N1特异性单克隆抗体8H12,封闭后加入含H5N1病毒样品。病毒表面N1神经氨酸酶(NA)被8H12捕获,同时H5血凝素(HA)被辣根过氧化物酶(HRP)标记的H5特异性单克隆抗体2D9识别,形成8H12–病毒–2D9-HRP复合物。洗涤去除未结合物质后,加入邻苯二胺(OPD)底物,HRP催化OPD氧化生成有色产物;0.1 N硫酸终止反应,490 nm吸光度随病毒HA滴度/浓度升高而增大。该体系同时确认H5 HA与N1 NA,无需单独NA分型。

检测灵敏度

LOD: 1 to 2 HA titers;100 μl样品含1 HA titer病毒(平均及以上吸收株);2 HA titers(低于平均吸收株)

效应效果

该AC-ELISA对41株高致病性H5N1毒株均呈阳性,平均OD490约1.2,且至少为40株非H5N1毒株的10倍;非H5N1毒株平均OD490仅0.06,未观察到交叉反应,包括H1N1、H3N2、H5N2、H7N7及流感B等。检测限为100 μl样品含1–2 HA滴度,优于Rockeyby商品化甲型流感抗原检测(200 μl含1.5 HA滴度)。文中未报告稳定性、重现性RSD或实际样品加标回收率。作者认为该双抗体体系可同时确认H5 HA与N1 NA,省去后续NA分型,适合转化为点式ELISA、免疫过滤或电化学生物传感器等现场快速检测格式。

传感器的构成

  • 固相载体:96孔圆底微孔板(Nunc),提供抗体包被表面
  • 捕获识别层:N1特异性单克隆抗体8H12(IgG1),包被于孔壁捕获病毒N1神经氨酸酶
  • 封闭层:PBS含5%脱脂奶粉,封闭非特异结合位点
  • 检测识别层:H5特异性单克隆抗体2D9(IgG1),识别捕获病毒H5血凝素
  • 信号标记层:辣根过氧化物酶(HRP)标记的2D9抗体,提供酶促显色能力
  • 显色底物层:邻苯二胺二盐酸盐(OPD),被HRP催化生成有色产物
  • 终止读出层:0.1 N硫酸终止反应,490 nm吸光度读数

中文摘要

高致病性禽流感H5N1亚型病毒已造成家禽严重损失并导致人类散发感染,存在大流行风险,快速诊断与监测至关重要。本研究报道基于H5和N1特异性单克隆抗体(MAbs)的抗原捕获酶联免疫吸附试验(AC-ELISA),用于快速检测H5N1病毒。H5血凝素(HA)特异性抗体2D9识别构象表位,可识别0、1、2.1、2.2、2.3、4、7和8等多个H5N1分支。N1神经氨酸酶(NA)特异性抗体8H12识别AELPF线性表位,该表位在708株H5N1病毒NA中保守率为99%,在N2至N9亚型中缺失。AC-ELISA用41株H5N1高致病性毒株、36株非H5N1病毒和4株流感B病毒检测,未见交叉反应。估计检测限为1至2 HA滴度。该法可同时检测H5和N1抗原,省去NA二次分型;转化为点式ELISA、免疫过滤或电化学生物传感器等现场格式,可实现临床或环境样品中H5和N1双重检测。

英文摘要

Highly pathogenic avian influenza (HPAI) virus of the H5N1 subtype has caused devastating damage to poultry flocks and sporadic human H5N1 infections. There is concern that this virus subtype may gain transmissibility and become pandemic. Rapid diagnosis and surveillance for H5N1 subtype viruses are critical for the control of H5N1 infection. In this study, we report a robust antigen-capture enzyme-linked immunosorbent assay (AC-ELISA) based on H5- and N1-specific monoclonal antibodies (MAbs) for the rapid detection of H5N1 subtype viruses. The H5 hemagglutinin (HA)-specific MAb (2D9) targets a conformational epitope which recognized multiple clades of H5N1 viruses, including clades 0, 1, 2.1, 2.2, 2.3, 4, 7, and 8. The N1 neuraminidase (NA)-specific MAb (8H12) recognized a linear epitope comprising the sequence AELPF. This epitope was 99% conserved in the NA of 708 analyzed H5N1 viruses, while the epitope was absent in NAs of subtypes N2 through N9. The specificity of the AC-ELISA was examined by using 41 H5N1 HPAI strains from multiple clades, 36 non-H5N1 viruses, and 4 influenza B viruses. No cross-reactivity was observed for any of the non-H5N1 viruses tested. The estimated detection limit was 1 to 2 HA titers. It is concluded that this H5N1 AC-ELISA can simultaneously detect H5 and N1 subtype antigens, eliminating the need for secondary testing for the NA subtype. Implementation of this assay in ELISA-like formats suitable for field use, such as dot ELISA, immunofiltration, or electrochemical biosensor technologies, would provide dual on-site detection of H5 and N1 in clinical or environmental specimens.

关键词

H5N1禽流感抗原捕获ELISA单克隆抗体血凝素神经氨酸酶快速检测