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基于磁珠的免疫分析法用于毒素的自主检测。

Magnetic bead based immunoassay for autonomous detection of toxins.

作者信息

Kwon Youngeun, Hara Christine A, Knize Mark G, Hwang Mona H, Venkateswaran Kodumudi S, Wheeler Elizabeth K, Bell Perry M, Renzi Ronald F, Fruetel Julie A, Bailey Christopher G

机构信息

Lawrence Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Anal Chem. 2008 Nov 15;80(22):8416-23. doi: 10.1021/ac8010044. Epub 2008 Oct 11.

Abstract

We are developing an automated system for the simultaneous, rapid detection of a group of select agents and toxins in the environment. To detect toxins, we modified and automated an antibody-based approach previously developed for manual medical diagnostics that uses fluorescent eTag reporter molecules and is suitable for highly multiplexed assays. Detection is based on two antibodies binding simultaneously to a single antigen, one of which is labeled with biotin while the other is conjugated to a fluorescent eTag through a cleavable linkage. Aqueous samples are incubated with the mixture of antibodies along with streptavidin-coated magnetic beads and a photoactive porphyrin complex. In the presence of antigen, a molecular complex is formed where the cleavable linkage is held in proximity to the photoactive group. Upon excitation at 680 nm, free radicals are generated, which diffuse and cleave the linkage, releasing the eTags. Released eTags are analyzed using capillary gel electrophoresis with laser-induced fluorescence detection. Limits of detection for ovalbumin and botulinum toxoid individually were 4 (or 80 pg) and 16 ng/mL (or 320 pg), respectively, using the manual assay. In addition, we demonstrated the use of pairs of antibodies from different sources in a single assay to decrease the rate of false positives. Automation of the assay was demonstrated in a flow-through format with higher LODs of 32 ng/mL (or 640 ng) each of a mixture of ovalbumin and botulinum toxoid. This versatile assay can be easily modified with the appropriate antibodies to detect a wide range of toxins and other proteins.

摘要

我们正在开发一种自动化系统,用于同时快速检测环境中的一组特定病原体和毒素。为了检测毒素,我们改进并自动化了一种先前为手动医学诊断开发的基于抗体的方法,该方法使用荧光eTag报告分子,适用于高度多重检测。检测基于两种抗体同时结合到单个抗原上,其中一种用生物素标记,另一种通过可裂解连接与荧光eTag偶联。水性样品与抗体混合物、链霉亲和素包被的磁珠和光活性卟啉复合物一起孵育。在存在抗原的情况下,形成分子复合物,其中可裂解连接靠近光活性基团。在680nm激发下,产生自由基,自由基扩散并裂解连接,释放eTag。使用毛细管凝胶电泳和激光诱导荧光检测分析释放的eTag。使用手动检测时,卵清蛋白和肉毒杆菌类毒素的检测限分别为4(或80pg)和16ng/mL(或320pg)。此外,我们证明了在单一检测中使用来自不同来源的抗体对以降低假阳性率。该检测的自动化以流通形式展示,卵清蛋白和肉毒杆菌类毒素混合物的检测限较高,均为32ng/mL(或640ng)。这种通用检测方法可以很容易地用适当的抗体进行修改,以检测多种毒素和其他蛋白质。

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