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光流控技术在合成生物学中的前沿应用。

Frontiers of optofluidics in synthetic biology.

机构信息

Lane Center for Computational Biology, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Lab Chip. 2012 Oct 7;12(19):3654-65. doi: 10.1039/c2lc40828g.

Abstract

The development of optofluidic-based technology has ushered in a new era of lab-on-a-chip functionality, including miniaturization of biomedical devices, enhanced sensitivity for molecular detection, and multiplexing of optical measurements. While having great potential, optofluidic devices have only begun to be exploited in many biotechnological applications. Here, we highlight the potential of integrating optofluidic devices with synthetic biological systems, which is a field focusing on creating novel cellular systems by engineering synthetic gene and protein networks. First, we review the development of synthetic biology at different length scales, ranging from single-molecule, single-cell, to cellular population. We emphasize light-sensitive synthetic biological systems that would be relevant for the integration with optofluidic devices. Next, we propose several areas for potential applications of optofluidics in synthetic biology. The integration of optofluidics and synthetic biology would have a broad impact on point-of-care diagnostics and biotechnology.

摘要

基于光流控的技术发展开创了芯片实验室功能的新时代,包括生物医学设备的小型化、分子检测的灵敏度提高和光学测量的多路复用。虽然具有巨大的潜力,但光流控设备仅在许多生物技术应用中开始得到利用。在这里,我们强调了将光流控器件与合成生物学系统集成的潜力,这是一个专注于通过工程合成基因和蛋白质网络来创建新型细胞系统的领域。首先,我们回顾了在不同尺度上合成生物学的发展,从单分子、单细胞到细胞群体。我们强调了与光流控器件集成相关的光敏感合成生物学系统。接下来,我们提出了光流控技术在合成生物学中几个潜在的应用领域。光流控和合成生物学的集成将对即时诊断和生物技术产生广泛的影响。

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