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用于监测水生系统中 Cd、Cr 和 Zn 的整体细胞微藻-蓝藻阵列生物传感器。

Whole cell microalgal-cyanobacterial array biosensor for monitoring Cd, Cr and Zn in aquatic systems.

机构信息

Department of Microbiology, Faculty of Science, University of Kelaniya, Kelaniya, GQ 11600, Sri Lanka E-mail:

Department of Zoology and Environmental Management, Faculty of Science, University of Kelaniya, Kelaniya, GQ 11600, Sri Lanka.

出版信息

Water Sci Technol. 2021 Oct;84(7):1579-1593. doi: 10.2166/wst.2021.339.

Abstract

Bioavailable content of metals in aquatic systems has become critical in assessing the toxic effect of metals accumulating in the environment. Considering the need for rapid measurements, an optical microalgal-cyanobacterial array biosensor was developed using two strains of microalgae, Mesotaenium sp. and a strain of cyanobacteria Synechococcus sp. to detect Cd, Cr and Zn in aquatic systems. Microalgal and cyanobacterial cells were immobilized in a 96-well microplate using sol-gel method using silica. Optimum operational conditions for the biosensor array such as exposure time, storage stability, pH, and multiple metal effect were tested. A 10 min exposure time yielded optimum fluorescence values. Metal toxicity increased with decreasing pH, resulting in low relative fluorescence (%) and decreased with increasing pH, resulting in higher relative fluorescence (%). The optimum storage time for biosensor strains were 4 weeks for microalgal cultures and 8 weeks for cyanobacterial culture, at 4 °C storage temperature. The metal mixtures showed less effect on the inhibition of relative fluorescence (%) of microalgal/cyanobacterial cultures, displaying an antagonistic behavior among the metals tested. As a single unit, this photosynthetic array biosensor will be a valuable tool in detecting multi-metals in aquatic systems.

摘要

水生系统中金属的生物可利用含量在评估环境中金属积累的毒性效应方面变得至关重要。考虑到快速测量的需求,开发了一种使用两种微藻(Mesotaenium sp.和一种蓝藻Synechococcus sp.)的光学微藻-蓝藻阵列生物传感器来检测水生系统中的 Cd、Cr 和 Zn。使用溶胶-凝胶法将微藻和蓝藻细胞固定在 96 孔微孔板中,使用二氧化硅。测试了生物传感器阵列的最佳操作条件,如暴露时间、储存稳定性、pH 值和多种金属效应。10 分钟的暴露时间产生了最佳的荧光值。金属毒性随 pH 值降低而增加,导致相对荧光 (%) 降低,随 pH 值升高而降低,导致相对荧光 (%) 升高。微藻培养物的最佳储存时间为 4 周,蓝藻培养物的最佳储存时间为 8 周,储存温度为 4°C。金属混合物对微藻/蓝藻培养物相对荧光 (%) 的抑制作用影响较小,显示出测试金属之间的拮抗行为。作为一个单一的单元,这种光合阵列生物传感器将是检测水生系统中多种金属的有价值的工具。

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