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基于合成生物学的全细胞生物传感器的进展:原理、遗传模块及在食品安全中的应用。

Advances in Synthetic-Biology-Based Whole-Cell Biosensors: Principles, Genetic Modules, and Applications in Food Safety.

机构信息

School of Food and Health, Beijing Technology and Business University (BTBU), Beijing 100048, China.

出版信息

Int J Mol Sci. 2023 Apr 28;24(9):7989. doi: 10.3390/ijms24097989.

Abstract

A whole-cell biosensor based on synthetic biology provides a promising new method for the on-site detection of food contaminants. The basic components of whole-cell biosensors include the sensing elements, such as transcription factors and riboswitches, and reporting elements, such as fluorescence, gas, etc. The sensing and reporting elements are coupled through gene expression regulation to form a simple gene circuit for the detection of target substances. Additionally, a more complex gene circuit can involve other functional elements or modules such as signal amplification, multiple detection, and delay reporting. With the help of synthetic biology, whole-cell biosensors are becoming more versatile and integrated, that is, integrating pre-detection sample processing, detection processes, and post-detection signal calculation and storage processes into cells. Due to the relative stability of the intracellular environment, whole-cell biosensors are highly resistant to interference without the need of complex sample preprocessing. Due to the reproduction of chassis cells, whole-cell biosensors replicate all elements automatically without the need for purification processing. Therefore, whole-cell biosensors are easy to operate and simple to produce. Based on the above advantages, whole-cell biosensors are more suitable for on-site detection than other rapid detection methods. Whole-cell biosensors have been applied in various forms such as test strips and kits, with the latest reported forms being wearable devices such as masks, hand rings, and clothing. This paper examines the composition, construction methods, and types of the fundamental components of synthetic biological whole-cell biosensors. We also introduce the prospect and development trend of whole-cell biosensors in commercial applications.

摘要

基于合成生物学的全细胞生物传感器为现场检测食品污染物提供了一种很有前途的新方法。全细胞生物传感器的基本组成部分包括传感元件,如转录因子和核糖开关,以及报告元件,如荧光、气体等。传感元件和报告元件通过基因表达调控耦合,形成用于检测目标物质的简单基因回路。此外,更复杂的基因回路可以涉及其他功能元件或模块,如信号放大、多重检测和延迟报告。在合成生物学的帮助下,全细胞生物传感器变得更加通用和集成,即将预检测样品处理、检测过程以及后检测信号计算和存储过程集成到细胞中。由于细胞内环境相对稳定,全细胞生物传感器具有较高的抗干扰能力,无需进行复杂的样品预处理。由于底盘细胞的繁殖,全细胞生物传感器自动复制所有元件,无需进行纯化处理。因此,全细胞生物传感器易于操作且易于生产。基于上述优势,与其他快速检测方法相比,全细胞生物传感器更适合现场检测。全细胞生物传感器已应用于各种形式,如测试条和试剂盒,最新报道的形式是可穿戴设备,如口罩、手环和衣物。本文研究了合成生物学全细胞生物传感器基本组成部分的组成、构建方法和类型。我们还介绍了全细胞生物传感器在商业应用中的前景和发展趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb01/10178329/717cbc27322e/ijms-24-07989-g001.jpg

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