Characterization of a compact and highly sensitive fluorescence-based detection system for point-of-care applications

U. Obahiagbon, D. Kullman, Joseph T. Smith, B. Katchman, Hany M Arafa, K. Anderson, J. Christen
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引用次数: 6

Abstract

This work details the design and characterization of a low-cost, portable and highly sensitive fluorescence detection system intended for use in a compact and disposable point-of-care (POC) device. The detection device leverages time integration to improve the signal to noise ratio (SNR) compared to instantaneous measurements. It also eliminates complicated focusing optics and electronics typically found in bulky and expensive laboratory-scale devices. Characterization was performed by measuring a series of logarithmically scaled dilutions of 1 μm Nile Red fluorescent microspheres immobilized on microscope slides. This approach eliminates assay dependencies and elucidates the actual system performance. A theoretical model that predicts the time-integrated output voltage profile of the sensor was developed; this prediction is useful for evaluating any lens-free fluorescent system based on a set of filters and choice of fluorophore. By relating the fluorophore concentration, system design parameters, and the output voltage, the model matches well with the empirical data and the limit of determination (LOD) for Nile Red is 20 particles. This system provides a sensitive and potentially low-cost device for fluorescent diagnosis in an integrated and compact/miniaturized POC device, lab-on-chip or a table-top reader.
一个紧凑和高灵敏度的荧光检测系统的特征点护理应用
这项工作详细介绍了一种低成本、便携式和高灵敏度荧光检测系统的设计和特性,该系统旨在用于紧凑型一次性护理点(POC)设备。与瞬时测量相比,该检测装置利用时间积分来提高信噪比(SNR)。它还消除了复杂的聚焦光学和电子设备,这些设备通常存在于笨重而昂贵的实验室规模的设备中。通过测量固定在载玻片上的1 μm尼罗红荧光微球的一系列对数缩放稀释度来进行表征。这种方法消除了分析依赖性,并阐明了实际的系统性能。建立了预测传感器输出电压时变曲线的理论模型;这一预测是有用的评估任何基于一组滤光片和荧光团的选择无透镜荧光系统。通过将荧光团浓度、系统设计参数和输出电压联系起来,该模型与经验数据吻合较好,尼罗红的检出限为20粒。该系统为荧光诊断提供了一种敏感且潜在低成本的设备,用于集成和紧凑/小型化POC设备,芯片实验室或桌面读取器。
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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