4.7 Article

Determination of thiol functional groups on bacteria and natural organic matter in environmental systems

Journal

TALANTA
Volume 119, Issue -, Pages 240-247

Publisher

ELSEVIER
DOI: 10.1016/j.talanta.2013.11.004

Keywords

Thiols; Mercury; Fluorescence spectroscopy; Titration; NOM

Funding

  1. Office of Biological and Environmental Research, Office of Science, US Department of Energy (DOE) as part of the Mercury Science Focus Area (SFA) Program at ORNL
  2. DOE [DE-AC05-00OR22725]

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Organic thiols (R-SH) are known to react and form complexes with some toxic soft metals such as mercury (Hg) in both biotic and abiotic systems. However, a clear understanding of these interactions is currently limited because quantifying thiols in environmental matrices is difficult due to their low abundance, susceptibility to oxidation, and measurement interference by non-thiol compounds in samples. Here, we report a fluorescence-labeling method using a maleimide containing probe, ThioGlo-1 (TG-1), to determine total thiols directly on bacterial cells and natural organic matter (NOM). We systematically evaluated the optimal thiol labeling conditions and interference from organic compounds such as disulfide, methionine, thiourea, and amine, and inorganic ions such as Na+, K+, Ca2+, Fe2+, Cl-, SO42-, HCO3-, and SCN-, and found that the method is highly sensitive and selective. Only relatively high levels of sulfide (S2-) and sulfite (SO32-) significantly interfere with the thiol analysis. The method was successful in determining thiols in a bacterium Geobacter sulfurreducens PCA and its mutants in a phosphate buffered saline solution. The measured value of similar to 2.1 x 10(4) thiols cell(-1) (or similar to 0.07 mu mol g(-1) wet cells) is in good agreement with that observed during reactions between Hg and PCA cells. Using the standard addition, we determined the total thiols of two reference NOM samples, the reduced Elliot soil humic acid and Suwanee River NOM, to be 3.6 and 0.7 mu mol g(-1), respectively, consistent with those obtained based on their reactions with Hg. (C) 2013 Elsevier B.V. All rights reserved.

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