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用于同时检测生物战剂模拟物的多重液体阵列。

Multiplexed liquid arrays for simultaneous detection of simulants of biological warfare agents.

作者信息

McBride Mary T, Gammon Stuart, Pitesky Maurice, O'Brien Thomas W, Smith Thomas, Aldrich Jennifer, Langlois Richard G, Colston Bill, Venkateswaran Kodumudi S

机构信息

Lawrence Livermore National Laboratory, 7000 East Avenue, P.O. Box 808, Livermore, California 94550, USA.

出版信息

Anal Chem. 2003 Apr 15;75(8):1924-30. doi: 10.1021/ac026379k.

Abstract

Liquid array-based multiplexed immunoassays designed for rapid, sensitive, specific, and simultaneous detection of multiple simulants of biological warfare agents have been developed. In both blind and standard laboratory trials, we demonstrate the simultaneous detection of four simulant agents from a single sample. The challenge agents comprise broad classes of pathogens (virus, protein toxins, bacterial spores, vegetative cells). Assay performance of each analyte was optimized, and dose-response curves and the limits of detection (LODs) for individual analytes are presented. Assay performance, including dynamic range, sensitivity, and LODs for liquid arrays and enzyme-linked immunosorbant assay were compared and are shown to be similar. Maximum assay sensitivity is obtained in approximately 1 h, and good sensitivity is achieved in as little as 30 min. Although the sample matrixes are very complex, even for highly multiplexed assays the samples do not exhibit evidence of nonspecific binding, demonstrating that the assays also have high specificity.

摘要

已开发出基于液相芯片的多重免疫分析方法,用于快速、灵敏、特异且同时检测多种生物战剂模拟物。在盲法和标准实验室试验中,我们均展示了从单个样本中同时检测四种模拟剂的能力。这些挑战剂涵盖了广泛的病原体类别(病毒、蛋白质毒素、细菌孢子、营养细胞)。对每种分析物的检测性能进行了优化,并给出了剂量反应曲线以及各分析物的检测限(LOD)。比较了液相芯片和酶联免疫吸附测定的检测性能,包括动态范围、灵敏度和检测限,结果显示二者相似。在约1小时内可获得最大检测灵敏度,最短30分钟即可实现良好的灵敏度。尽管样本基质非常复杂,但即使对于高度多重的分析,样本也未表现出非特异性结合的迹象,这表明该分析方法也具有高特异性。

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