AI Article Synopsis

  • Developed fibre-optic biosensors using alginate-immobilised luminescent bacteria to detect low levels of mercury (Hg) and arsenic (As) in the environment.
  • Optimised sensors achieved high sensitivity for Hg at 2.6 µg/L and As at 141 µg/L when stored in CaCl2 solution at -80°C.
  • Comparison with non-immobilised sensors revealed that direct cell contact significantly increased bioavailability of Hg and As in soil samples, highlighting potential limitations of the immobilised approach.

Article 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.

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http://dx.doi.org/10.1016/j.bios.2006.06.019DOI Listing

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