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Towards single biomolecule handling and characterization by MEMS

机译:通过MEMS进行单一生物分子处理和表征

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Applications of microelectromechanical systems (MEMS) technology are widespread in both industrial and research fields providing miniaturized smart tools. In this review, we focus on MEMS applications aiming at manipulations and characterization of biomaterials at the single molecule level. Four topics are discussed in detail to show the advantages and impact of MEMS tools for biomolecular manipulations. They include the microthermodevice for rapid temperature alternation in real-time microscopic observation, a microchannel with microelectrodes for isolating and immobilizing a DNA molecule, and microtweezers to manipulate a bundle of DNA molecules directly for analyzing its conductivity. The feasibilities of each device have been shown by conducting specific biological experiments. Therefore, the development of MEMS devices for single molecule analysis holds promise to overcome the disadvantages of the conventional technique for biological experiments and acts as a powerful strategy in molecular biology.
机译:在提供小型化智能工具的工业和研究领域中,微机电系统(MEMS)技术的应用广泛。在这篇综述中,我们专注于旨在在单分子水平上操纵和表征生物材料的MEMS应用。详细讨论了四个主题,以展示MEMS工具在生物分子操作中的优势和影响。它们包括用于在实时显微镜观察中快速改变温度的微热装置,带有用于分离和固定DNA分子的微电极的微通道,以及用于直接控制DNA分子束以分析其电导率的微镊子。每个装置的可行性已通过进行特定的生物学实验得到了证明。因此,用于单分子分析的MEMS器件的发展有望克服传统的生物实验技术的缺点,并在分子生物学中起着强有力的作用。

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