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利用可视化细菌生物传感器检测水中的环境污染物镉。

Detection of environmental pollutant cadmium in water using a visual bacterial biosensor.

机构信息

Department of Pathology and Toxicology, Shenzhen Prevention and Treatment Center for Occupational Diseases, Shenzhen, 518020, China.

National Key Clinical Specialty of Occupational Diseases, Shenzhen Prevention and Treatment Center for Occupational Diseases, Shenzhen, 518020, China.

出版信息

Sci Rep. 2022 Apr 27;12(1):6898. doi: 10.1038/s41598-022-11051-9.

Abstract

Cadmium (Cd) contamination in water and soil is considered an environmental pollutant. Food crops can absorb and accumulate bioavailable Cd. Continuous monitoring of Cd levels in the environment can minimize exposure and harm to humans. Visual pigments have been demonstrated to have great potential in the development of minimal-equipment biosensors. In the present study, a metabolically engineered bacterium was employed to produce blue-purple pigment violacein responsive to toxic Cd(II). The high stability of the bisindole pigment contributed to determining the violacein at wavelengths of 578 nm. Visual and quantifiable signals could be captured after a 1.5-h Cd(II) exposure. This novel biosensor showed significantly stronger responses to Cd(II) than to other heavy metals including Pb(II), Zn(II), and Hg(II). A significant increase in pigment signal was found to respond to as low as 0.049 μM Cd(II). The naked eye can detect the color change when violacein-based biosensor is exposed to 25 μM Cd(II). A high-throughput method for rapid determination of soluble Cd(II) in environmental water was developed using a colorimetric microplate.

摘要

镉(Cd)污染水和土壤被认为是一种环境污染物。农作物可以吸收和积累生物可利用的 Cd。对环境中 Cd 水平的持续监测可以最大限度地减少对人类的暴露和伤害。视觉色素在开发最小化设备生物传感器方面显示出巨大的潜力。在本研究中,一种代谢工程细菌被用于生产对有毒 Cd(II) 有响应的蓝紫色色素 原紫质。双吲哚色素的高稳定性有助于在 578nm 波长处测定原紫质。在暴露于 Cd(II) 1.5 小时后,可以捕捉到可视和可量化的信号。这种新型生物传感器对 Cd(II)的响应明显强于其他重金属,包括 Pb(II)、Zn(II)和 Hg(II)。当基于原紫质的生物传感器暴露于低至 0.049μM Cd(II)时,发现色素信号显著增加。当暴露于 25μM Cd(II)时,肉眼可以检测到基于原紫质的生物传感器的颜色变化。开发了一种使用比色微板的高通量方法,用于快速测定环境水中可溶性 Cd(II)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/977c/9046199/d59f08aa0003/41598_2022_11051_Fig1_HTML.jpg

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