Quantum dot-based assay for Cu2+ quantification in bacterial cell culture

Duran-Toro, V; Gran-Scheuch, A; Ordenes-Aenishanslins, N; Monrás, J.P; Saona, L. A.; Venegas, F.A; Chasteen, T. G.; Bravo D.; Perez-Donoso J.M.

Abstract

A simple and sensitive method for quantification of nanomolar copper with a detection limit of 1.2 x 10(-10) M and a linear range from 10(-9) to 10-9 M is reported. For the most useful analytical concentration of quantum dots, 1160 mu g/ml, a 1/K-sv, value of 11 mu M Cu2+ was determined. The method is based on the interaction of Cu2+ with glutathione-capped CdTe quantum dots (CdTe-GSH QDs) synthesized by a simple and economic biomimetic method. Green CdTe-GSH QDs displayed the best performance in copper quantification when QDs of different sizes/colors were tested. Cu2+ quantification is highly selective given that no significant interference of QDs with 19 ions was observed. No significant effects on Cu2+ quantification were determined when different reaction matrices such as distilled water, tap water, and different bacterial growth media were tested. The method was used to determine copper uptake kinetics on Escherichia coli cultures. QD-based quantification of copper on bacterial supernatants was compared with atomic absorption spectroscopy as a means of confirming the accuracy of the reported method. The mechanism of Cu2+-mediated QD fluorescence quenching was associated with nanoparticle decomposition. (C) 2014 Elsevier Inc. All rights reserved.

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Título según WOS: Quantum dot-based assay for Cu2+ quantification in bacterial cell culture
Título de la Revista: ANALYTICAL BIOCHEMISTRY
Volumen: 450
Editorial: ACADEMIC PRESS INC ELSEVIER SCIENCE
Fecha de publicación: 2014
Página de inicio: 30
Página final: 36
Idioma: English
DOI:

10.1016/j.ab.2014.01.001

Notas: ISI - ISI