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用于定量分析的气体驱动生物传感器。

Gas-propelled biosensors for quantitative analysis.

作者信息

Liu Xinli, Wang Yanping, Gao Yanfeng, Song Yujun

机构信息

College of Engineering and Applied Sciences, State Key Laboratory of Analytical Chemistry for Life Science, Nanjing University, Nanjing 210023, China.

出版信息

Analyst. 2021 Feb 21;146(4):1115-1126. doi: 10.1039/d0an02154g. Epub 2021 Jan 18.

Abstract

Gas-propelled biosensors display a simple gas-based signal amplification with quantitative detection features based on the target recognition event in combination with gas propulsion. Due to the liquid-gas conversion, the gas not only pushes the ink bar forward in the microchannel, but also serves as the power to propel the micromotors in the liquid. Thus, this continuous motion leads to a shift in distances which is associated with the target amount. Therefore, gas-propelled biosensors provide a visual quantification based on distance or speed signals without the need for expensive instruments. In this review, we focus on current developments in gas-propelled biosensors for quantitative analysis. First, we list the types of gas utilized as actuators in biosensors. Second, we review the representative gas-propelled biosensors, including the propulsion mechanisms and fabrication methods. Moreover, gas-propelled quantification based on distance and speed is summarized. Finally, we cover applications and provide a future perspective of gas-propelled biosensors.

摘要

气体驱动的生物传感器基于目标识别事件与气体推进相结合,呈现出具有定量检测功能的简单气体信号放大。由于液气转换,气体不仅推动微通道中的墨棒向前移动,还作为动力推动液体中的微电机。因此,这种连续运动导致与目标量相关的距离变化。所以,气体驱动的生物传感器无需昂贵仪器,就能基于距离或速度信号进行视觉定量分析。在本综述中,我们重点关注气体驱动生物传感器在定量分析方面的当前进展。首先,我们列出用作生物传感器致动器的气体类型。其次,我们回顾具有代表性的气体驱动生物传感器,包括推进机制和制造方法。此外,还总结了基于距离和速度的气体驱动定量分析。最后,我们介绍其应用并展望气体驱动生物传感器的未来发展前景。

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