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从生物学角度理解毒性:全细胞生物传感器的新进展

Making bio-sense of toxicity: new developments in whole-cell biosensors.

作者信息

Sørensen Søren J, Burmølle Mette, Hansen Lars H

机构信息

Department of Microbiology, University of Copenhagen, Sølvgade 83H, 1307 Copenhagen K, Denmark.

出版信息

Curr Opin Biotechnol. 2006 Feb;17(1):11-6. doi: 10.1016/j.copbio.2005.12.007. Epub 2006 Jan 11.

Abstract

Bacterial whole-cell biosensors are very useful for toxicity measurements of various samples. Semi-specific biosensors, containing fusions of stress-regulated promoters and reporter genes, have several advantages over the traditional, general biosensors that are based on constitutively expressed reporter genes. Furthermore, semi-specific biosensors are constantly being refined to lower their sensitivity and, in combination, are able to detect a wide range of toxic agents. However, the requirement for a positive response of these biosensors to toxicants can result in false-negative responses. The application of in situ inoculation and single-cell detection, combined with the introduction of new reporter genes and refined detection equipment, could lead to the extensive use of semi-specific, stress-responsive biosensors for toxicity estimations in the future.

摘要

细菌全细胞生物传感器对于各种样品的毒性测量非常有用。半特异性生物传感器包含应激调节启动子和报告基因的融合体,与基于组成型表达报告基因的传统通用生物传感器相比具有几个优点。此外,半特异性生物传感器不断得到改进以降低其灵敏度,并且结合起来能够检测多种有毒物质。然而,这些生物传感器对毒物产生阳性反应的要求可能导致假阴性反应。原位接种和单细胞检测的应用,结合新报告基因的引入和改进的检测设备,可能会导致半特异性应激反应生物传感器在未来广泛用于毒性评估。

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