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基于驱动磁纳米粒子的多重免疫分析快速集成生物传感器。

Rapid integrated biosensor for multiplexed immunoassays based on actuated magnetic nanoparticles.

机构信息

Philips Corporate Technologies, High Tech Campus, 5656 AE Eindhoven, The Netherlands.

出版信息

Lab Chip. 2009 Dec 21;9(24):3504-10. doi: 10.1039/b913960e. Epub 2009 Oct 15.

Abstract

The realization of biomolecular detection assays for diagnostic purposes is technologically very challenging because such tests demand full integration for ease of use and need to deliver a high analytical performance with cost-effective use of materials. In this article an optomagnetic immunoassay technology is described based on nanoparticles that are magnetically actuated and optically detected in a stationary sample fluid. The dynamic control of nanoparticles by magnetic fields impacts the key immunoassay process steps, giving unprecedented speed, assay control and seamless integration of the total test. The optical detection yields sensitive and multiplexed assays in a low-cost disposable cartridge. We demonstrate that the optomagnetic technology enables high-sensitivity one-step assays in blood serum/plasma and whole saliva. Drugs of abuse are detected at sub-nanogram per millilitre levels in a total assay time of 1 min, and the cardiac marker troponin I is detected at sub-picomole per litre concentrations in a few minutes. The optomagnetic technology is fundamentally suited for high-performance integrated testing and is expected to open a new paradigm in biosensing.

摘要

基于纳米颗粒的磁动光学免疫分析技术用于诊断目的的生物分子检测方法在技术上具有很大的挑战性,因为这些检测需要完全集成以方便使用,并且需要在具有成本效益地使用材料的情况下提供高分析性能。本文介绍了一种基于纳米颗粒的磁动光学免疫分析技术,该技术基于在固定样品流体中通过磁场驱动和光学检测纳米颗粒。磁场对纳米颗粒的动态控制影响关键的免疫分析步骤,从而实现前所未有的速度、分析控制和整个测试的无缝集成。光学检测在低成本的一次性试剂盒中实现了灵敏和多重检测。我们证明,磁动光学技术可在血清/血浆和全唾液中实现高灵敏度的一步检测。在总检测时间为 1 分钟的情况下,可检测到亚纳克每毫升级别的滥用药物,在几分钟内可检测到亚皮摩尔每升浓度的心脏标志物肌钙蛋白 I。磁动光学技术非常适合高性能集成测试,有望开创生物传感的新范例。

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