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Engineered cells as biosensing systems in biomedical analysis

机译:工程细胞作为生物医学分析中的生物传感系统

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摘要

Over the past two decades there have been great advances in biotechnology, including use of nucleic acids, proteins, and whole cells to develop a variety of molecular analytical tools for diagnostic, screening, and pharmaceutical applications. Through manipulation of bacterial plasmids and genomes, bacterial whole-cell sensing systems have been engineered that can serve as novel methods for analyte detection and characterization, and as more efficient and cost-effective alternatives to traditional analytical techniques. Bacterial cell-based sensing systems are typically sensitive, specific and selective, rapid, easy to use, low-cost, and amenable to multiplexing, high-throughput, and miniaturization for incorporation into portable devices. This critical review is intended to provide an overview of available bacterial whole-cell sensing systems for assessment of a variety of clinically relevant analytes. Specifically, we examine whole-cell sensing systems for detection of bacterial quorum sensing molecules, organic and inorganic toxic compounds, and drugs, and for screening of antibacterial compounds for identification of their mechanisms of action. Methods used in the design and development of whole-cell sensing systems are also reviewed.
机译:在过去的二十年中,生物技术取得了长足的进步,包括使用核酸,蛋白质和全细胞来开发用于诊断,筛选和制药应用的各种分子分析工具。通过操纵细菌质粒和基因组,已设计出细菌全细胞传感系统,可以用作分析物检测和表征的新方法,并且可以作为传统分析技术的更有效和更具成本效益的替代方法。基于细菌细胞的传感系统通常是灵敏的,特异性的和选择性的,快速的,易于使用的,低成本的,并且易于多路复用,高通量和小型化,以结合到便携式设备中。这篇重要的综述旨在概述可用于评估各种临床相关分析物的细菌全细胞传感系统。具体来说,我们研究了全细胞传感系统,用于检测细菌群体传感分子,有机和无机有毒化合物以及药物,以及筛选抗菌化合物以鉴定其作用机理。还回顾了用于设计和开发全细胞传感系统的方法。

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