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实时生物监测水污染的活细胞系统:实际考虑因素和未来展望。

Live-Cell Systems in Real-Time Biomonitoring of Water Pollution: Practical Considerations and Future Perspectives.

机构信息

The Neurotox Laboratory, School of Science, RMIT University, Plenty Road, P.O. Box 71, Bundoora, VIC 3083, Australia.

Chair and Department of Medical Microbiology, Poznań University of Medical Sciences, Wieniawskiego 3, 61-712 Poznań, Poland.

出版信息

Sensors (Basel). 2021 Oct 23;21(21):7028. doi: 10.3390/s21217028.

Abstract

Continuous monitoring and early warning of potential water contamination with toxic chemicals is of paramount importance for human health and sustainable food production. During the last few decades there have been noteworthy advances in technologies for the automated sensing of physicochemical parameters of water. These do not translate well into online monitoring of chemical pollutants since most of them are either incapable of real-time detection or unable to detect impacts on biological organisms. As a result, biological early warning systems have been proposed to supplement conventional water quality test strategies. Such systems can continuously evaluate physiological parameters of suitable aquatic species and alert the user to the presence of toxicants. In this regard, single cellular organisms, such as bacteria, cyanobacteria, micro-algae and vertebrate cell lines, offer promising avenues for development of water biosensors. Historically, only a handful of systems utilising single-cell organisms have been deployed as established online water biomonitoring tools. Recent advances in recombinant microorganisms, cell immobilisation techniques, live-cell microarrays and microfluidic Lab-on-a-Chip technologies open new avenues to develop miniaturised systems capable of detecting a broad range of water contaminants. In experimental settings, they have been shown as sensitive and rapid biosensors with capabilities to detect traces of contaminants. In this work, we critically review the recent advances and practical prospects of biological early warning systems based on live-cell biosensors. We demonstrate historical deployment successes, technological innovations, as well as current challenges for the broader deployment of live-cell biosensors in the monitoring of water quality.

摘要

连续监测和预警潜在的有毒化学品水污染对于人类健康和可持续的粮食生产至关重要。在过去几十年中,自动化感测水的物理化学参数的技术取得了显著的进展。由于大多数技术要么无法实时检测,要么无法检测对生物有机体的影响,因此这些技术无法很好地转化为在线监测化学污染物。因此,提出了生物预警系统来补充传统的水质测试策略。这些系统可以连续评估合适水生物种的生理参数,并向用户发出有毒物质存在的警报。在这方面,单细胞生物,如细菌、蓝藻、微藻和脊椎动物细胞系,为开发水生物传感器提供了有前途的途径。从历史上看,只有少数利用单细胞生物的系统被部署为成熟的在线水生物监测工具。重组微生物、细胞固定化技术、活细胞微阵列和微流控芯片技术的最新进展为开发能够检测广泛的水污染物的小型化系统开辟了新途径。在实验环境中,它们被证明是具有检测痕量污染物能力的敏感和快速生物传感器。在这项工作中,我们批判性地回顾了基于活细胞生物传感器的生物预警系统的最新进展和实际前景。我们展示了历史部署的成功案例、技术创新以及活细胞生物传感器在水质监测中更广泛应用的当前挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb7d/8588540/656bfef55226/sensors-21-07028-g003.jpg

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