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Simultaneous Electrochemical Detection of Multiple Bacterial Species Using Metal-Organic Nanohybrids. | LitMetric

AI Article Synopsis

  • Organic metallic nanohybrids (NHs) consist of small metal nanoparticles embedded in a conductive polymer, making them effective electrochemical labels for detecting specific bacteria through unique oxidation current responses.
  • Gold NHs (gold nanoparticles with poly(-toluidine)) and copper NHs (copper nanoparticles with polyaniline) do not interfere with each other's signals when tested on the same electrode.
  • By incorporating antibodies into these NHs, researchers developed a method for quick bacterial detection that can differentiate between specific species within minutes, proving valuable for rapid testing in food and drug manufacturing.

Article Abstract

Organic metallic nanohybrids (NHs), in which many small metal nanoparticles are encapsulated within a conductive polymer matrix, are useful as sensitive electrochemical labels because the constituents produce characteristic oxidation current responses. Gold NHs, consisting of gold nanoparticles and poly(-toluidine), and copper NHs, consisting of copper nanoparticles and polyaniline, did not interfere with each other in terms of the electrochemical signals obtained on the same electrode. Antibodies were introduced into these NHs to function as electrochemical labels for targeting specific bacteria. Electrochemical measurements using screen-printed electrodes dry-fixed with NH-labeled bacterial cells enabled the estimation of bacterial species and number within minutes, based on the distinct current response of the labels. Our proposed method achieved simultaneous detection of enterohemorrhagic and in a real sample. These NHs will be powerful tools as electrochemical labels and are expected to be useful for rapid testing in food and drug-related manufacturing sites.

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Source
http://dx.doi.org/10.1021/acs.analchem.3c04587DOI Listing

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