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Bead-Based Assays for Biodetection: From Flow-Cytometry to Microfluidics

机译:基于珠的生物检测方法:从流式细胞术到微流控

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The potential for the use of biological agents by terrorists is a real threat. Two approaches for antibody-based detection of biological species are described in this paper: 1) The use of microbead arrays for multiplexed flow cytometry detection of cytokines and botulinum neurotoxin simulant, and 2) a microfluidic platform for capture and separation of different size superparamagnetic nanoparticles followed by on-chip fluorescence detection of the sandwich complex. These approaches both involve the use of automated fluidic systems for trapping antibody-functionalized microbeads, which allows sample, assay reagents, and wash solutions to be perfused over a micro-column of beads, resulting in faster and more sensitive immunoassays. The automated fluidic approach resulted in up to five-fold improvements in immunoassay sensitivity/speed as compared to identical immunoassays performed in a typical manual batch mode. A second approach for implementing multiplexed bead-based immunoassays without using flow cytometry detection is currently under development. The goal of the microfluidic-based approach is to achieve rapid (<20 minutes), multiplexed (≥ 3 bioagents) detection using a simple and low-cost, integrated microfluidic/optical detection platform. Using fiber-optic guided laser-induced fluorescence, assay detection limits were shown to be in the 100's of picomolar range (10's of micrograms per liter) for botulinum neurotoxin simulant without any optimization of the microfluidic device or optical detection approach.
机译:恐怖分子使用生物制剂的潜力是真正的威胁。本文描述了两种基于抗体的生物物种检测方法:1)微珠阵列在细胞因子和肉毒杆菌神经毒素模拟物的多重流式细胞术检测中的应用,以及2)用于捕获和分离不同大小的超顺磁性纳米颗粒的微流体平台然后对夹心复合物进行片上荧光检测。这些方法都涉及使用自动化流体系统来捕获抗体功能化的微珠,从而允许将样品,测定试剂和洗涤液灌注到微珠柱上,从而实现更快,更灵敏的免疫测定。与在典型的手动批处理模式下进行的相同免疫分析相比,自动流体方法可将免疫分析的灵敏度/速度提高多达五倍。当前正在开发用于不使用流式细胞术检测而实施基于多重珠子的免疫测定的第二种方法。基于微流体的方法的目标是使用简单且低成本的集成微流体/光学检测平台,实现快速(<20分钟),多路复用(≥3种生物制剂)检测。使用光纤引导的激光诱导的荧光,肉毒杆菌神经毒素模拟物的检测检出限显示为100皮摩尔范围(10微克/升),而没有对微流体装置或光学检测方法进行任何优化。

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