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一种用于即时检测水中细菌病原体的全细胞生物传感器。

A Whole-Cell Biosensor for Point-of-Care Detection of Waterborne Bacterial Pathogens.

出版信息

ACS Synth Biol. 2021 Feb 19;10(2):333-344. doi: 10.1021/acssynbio.0c00491. Epub 2021 Jan 26.

Abstract

Water contamination by pathogenic bacteria is a major public health concern globally. Monitoring bacterial contamination in water is critically important to protect human health, but this remains a critical challenge. Engineered whole-cell biosensors created through synthetic biology hold great promise for rapid and cost-effective detection of waterborne pathogens. In this study, we created a novel whole-cell biosensor to detect water contamination by and , which are two critical bacterial pathogens and are recognized as common causative agents for waterborne diseases. The biosensor detects the target bacterial pathogens by responding to the relevant quorum sensing signal molecules. Particularly, this study constructed and characterized the biosensor on the basis of the QscR quorum sensing signal system for the first time. We first designed and constructed a QscR on the basis of the sensing module in the host cell and integrated the QscR sensing module with a reporting module that expressed an enhanced green fluorescent protein (EGFP). The results demonstrated that the biosensor had high sensitivity in response to the quorum sensing signals of the target bacterial pathogens. We further engineered a biosensor that expressed a red pigment lycopene in the reporting module to produce a visible signal readout for the pathogen detection. Additionally, we investigated the feasibility of a paper-based assay by immobilizing the lycopene-based whole-cell biosensor on paper with the aim to build a prototype for developing portable detection devices. The biosensor would provide a simple and inexpensive alternative for timely and point-of-care detection of water contamination and protect human health.

摘要

水源中致病性细菌的污染是一个全球性的主要公共卫生问题。监测水中细菌的污染对于保护人类健康至关重要,但这仍然是一个重大挑战。通过合成生物学创建的工程化全细胞生物传感器为快速、经济有效地检测水传播病原体提供了巨大的潜力。在这项研究中,我们创建了一种新型的全细胞生物传感器来检测 和 ,这两种细菌病原体是水传播疾病的常见致病因素。该生物传感器通过响应相关的群体感应信号分子来检测目标细菌病原体。特别是,本研究首次基于 QscR 群体感应信号系统构建和表征了该生物传感器。我们首先基于 宿主细胞中的感应模块设计并构建了 QscR,并将 QscR 感应模块与表达增强型绿色荧光蛋白(EGFP)的报告模块集成。结果表明,该生物传感器对目标细菌病原体的群体感应信号具有高灵敏度。我们进一步设计了一个在报告模块中表达红色色素番茄红素的生物传感器,以产生病原体检测的可见信号读数。此外,我们研究了通过将基于番茄红素的全细胞生物传感器固定在纸上的纸基分析方法的可行性,目的是构建用于开发便携式检测设备的原型。该生物传感器将为及时进行现场检测提供一种简单且廉价的替代方案,以保护人类健康。

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