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光纤细菌生物传感器及其在西班牙阿兹纳科洛尔矿区土壤和沉积物中生物可利用汞和砷分析中的应用。

Fibre-optic bacterial biosensors and their application for the analysis of bioavailable Hg and As in soils and sediments from Aznalcollar mining area in Spain.

作者信息

Ivask Angela, Green Tal, Polyak Boris, Mor Amit, Kahru Anne, Virta Marko, Marks Robert

机构信息

National Institute of Chemical Physics and Biophysics, Akadeemia tee 23, Tallinn 12618, Estonia.

出版信息

Biosens Bioelectron. 2007 Feb 15;22(7):1396-402. doi: 10.1016/j.bios.2006.06.019. Epub 2006 Aug 4.

Abstract

Fibre-optic biosensors for Hg and As were developed by attaching alginate-immobilised recombinant luminescent Hg- and As-sensor bacteria onto optical fibres. The optimised biosensors (consisting of seven layers of fibre-attached bacteria pre-grown till mid-logarithmic growth phase) enabled quantification of environmentally relevant concentrations of the target analytes: 2.6 microg l-1 of Hg(II) and 141 microg l-1 of As(V) or 18 microg l-1 of As(III). The highest viability and sensitivity for target analyte was obtained when fibre tips were stored in CaCl2 solution at -80 degrees C. Applicability of the fibre-optic biosensors in parallel to the respective non-immobilised sensors was assessed on 10 natural soil and sediment samples from Aznalcollar mining area (Spain). On the average 0.2% of the total Hg and 0.87% of the total As proved bioavailable to fibre-attached bacteria. Interestingly, about 20-fold more Hg and 4-fold more As was available to non-immobilised sensor bacteria indicating the importance of direct cell contact (possible only for non-immobilised cells) for enhanced bioavailability of these metals in solid samples.

摘要

通过将海藻酸盐固定化的重组发光汞和砷传感细菌附着到光纤上,开发出了用于检测汞和砷的光纤生物传感器。优化后的生物传感器(由七层附着在光纤上且预培养至对数生长期中期的细菌组成)能够对环境中相关浓度的目标分析物进行定量检测:汞(II)浓度为2.6微克/升,砷(V)浓度为141微克/升或砷(III)浓度为18微克/升。当光纤尖端保存在-80℃的氯化钙溶液中时,对目标分析物具有最高的活力和灵敏度。在来自西班牙阿兹纳科莱尔矿区的10个天然土壤和沉积物样本上,评估了光纤生物传感器与相应的非固定化传感器并行使用的适用性。平均而言,附着在光纤上的细菌可利用的汞占总汞的0.2%,可利用的砷占总砷的0.87%。有趣的是,非固定化传感细菌可利用的汞约多20倍,可利用的砷约多4倍,这表明直接细胞接触(仅对非固定化细胞可能)对于提高这些金属在固体样品中的生物可利用性很重要。

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