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磁性颗粒作为生物分子的标记物和载体。

Magnetic particles as markers and carriers of biomolecules.

作者信息

Brückl H, Panhorst M, Schotter J, Kamp P B, Becker A

机构信息

ARCS-Nano-Systemtechnologie, A-1220 Wien, Austria.

出版信息

IEE Proc Nanobiotechnol. 2005 Feb;152(1):41-6. doi: 10.1049/ip-nbt:20045015.

Abstract

The detection and manipulation of biomolecules on a common platform is of considerable interest not only for application in devices such as diagnostic tools but also for basic research in biological and medical systems. A promising approach is the utilisation of magnetic particles as markers and carriers for biomolecules. The principle functionality of this approach is demonstrated by the authors. Magnetic particles used as markers can be detected by highly sensitive magnetoresistive sensors resulting in a purely electronic signal. A direct comparison with the standard fluorescence method reveals the advantages of using the magnetic particles. In addition, magnetic particles used as carriers can be manipulated on-chip via currents running through especially designed line patterns. Some current drawbacks and future aspects are discussed. The combination of sensing and manipulating magnetic particles is a promising choice for future integrated lab-on-a-chip systems.

摘要

在一个通用平台上对生物分子进行检测和操控不仅对于诊断工具等设备的应用十分重要,而且对于生物和医学系统的基础研究也具有重大意义。一种很有前景的方法是利用磁性颗粒作为生物分子的标记物和载体。作者展示了这种方法的主要功能。用作标记物的磁性颗粒可通过高灵敏度磁阻传感器进行检测,从而产生纯电子信号。与标准荧光方法的直接比较揭示了使用磁性颗粒的优势。此外,用作载体的磁性颗粒可通过流经特别设计的线路图案的电流在芯片上进行操控。文中还讨论了当前存在的一些缺点和未来发展方向。对于未来的集成芯片实验室系统而言,传感和操控磁性颗粒的结合是一个很有前景的选择。

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