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基于膜的侧向流动免疫层析条带,纳米颗粒作为报告物用于检测:综述。

Membrane-based lateral flow immunochromatographic strip with nanoparticles as reporters for detection: A review.

机构信息

State Key Laboratory of Food Science and Technology, Nanchang University, 235 Nanjing East Road, Nanchang 330047, PR China; Jiangxi-OAI Joint Research Institute, Nanchang University, Nanchang 330047, PR China.

Zystein, LLC., Fayetteville, AR 72704, USA.

出版信息

Biosens Bioelectron. 2016 Jan 15;75:166-80. doi: 10.1016/j.bios.2015.08.032. Epub 2015 Aug 18.

Abstract

Membrane-based lateral flow immunochromatographic strip (LFICS) is widely used in various fields because of its simplicity, rapidity (detection within 10min), and low cost. However, early designs of membrane-based LFICS for preliminary screening only provide qualitative ("yes/no" signal) or semi-quantitative results without quantitative information. These designs often suffer from low-signal intensity and poor sensitivity and are only capable of single analyte detection, not simultaneous multiple detections. The performance of existing techniques used for detection using LFICS has been considerably improved by incorporating different kinds of nanoparticles (NPs) as reporters. NPs can serve as alternative labels and improve analytical sensitivity or limit of detection of LFICS because of their unique properties, such as optical absorption, fluorescence spectra, and magnetic properties. The controlled manipulation of NPs allows simultaneous or multiple detections by using membrane-based LFICS. In this review, we discuss how colored (e.g., colloidal gold, carbon, and colloidal selenium NPs), luminescent (e.g., quantum dots, up-converting phosphor NPs, and dye-doped NPs), and magnetic NPs are integrated into membrane-based LFICS for the detection of target analytes. Gold NPs are also featured because of their wide applications. Different types and unique properties of NPs are briefly explained. This review focuses on examples of NP-based LFICS to illustrate novel concepts in various devices with potential applications as screening tools. This review also highlights the superiority of NP-based approaches over existing conventional strategies for clinical analysis, food safety, and environmental monitoring. This paper is concluded by a short section on future research trends regarding NP-based LFICS.

摘要

基于膜的侧向流动免疫层析条(LFICS)因其简单、快速(检测时间在 10min 内)和低成本而广泛应用于各个领域。然而,早期用于初步筛选的基于膜的 LFICS 设计仅提供定性(“是/否”信号)或半定量结果,没有定量信息。这些设计通常信号强度低,灵敏度差,只能进行单一分析物的检测,不能同时进行多种检测。通过将不同类型的纳米粒子(NPs)作为示踪物,已经大大提高了用于 LFICS 检测的现有技术的性能。NPs 因其独特的性质,如光学吸收、荧光光谱和磁性质,可用作替代标签,提高 LFICS 的分析灵敏度或检测限。通过对 NPs 的控制操作,可以通过基于膜的 LFICS 进行同时或多重检测。在这篇综述中,我们讨论了如何将有色(例如胶体金、碳和胶体硒 NPs)、发光(例如量子点、上转换磷光体 NPs 和染料掺杂 NPs)和磁性 NPs 整合到基于膜的 LFICS 中,以检测目标分析物。金 NPs 也因其广泛的应用而具有特色。简要解释了不同类型和独特性质的 NPs。这篇综述重点介绍了基于 NP 的 LFICS 示例,以说明具有潜在应用作为筛选工具的各种设备中的新概念。本文还强调了基于 NP 的方法在临床分析、食品安全和环境监测方面优于现有常规策略的优越性。最后一小节介绍了基于 NP 的 LFICS 的未来研究趋势。

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