Abstract
Blood safety is a global health goal. In developed countries, bacterial contamination of platelet concentrates is the highest infectious risk in transfusion despite the current preventive strategies. We aimed to develop a conductometric biosensor for the generic, rapid and sensitive detection of Gram-negative bacteria. Our strategy is based on immunosensors: addressable magnetic nanoparticles coupled with anti-LPS antibodies were used for the generic capture of Gram-negative bacteria. Bacterial capture was characterized by impedancemetric and microscopic measurements. The results obtained with conductometric measurements allowed real-time, sensitive detection of Escherichia coli or Serratia marcescens cultures from 1 to 103CFUmL-1. The ability of the immunosensor to detect Gram negative bacteria was also tested on clinically relevant strains. The conductometric immunosensor allowed the direct detection of 10-103CFUmL-1 of Pseudomonas aeruginosa and Acinetobacter baumannii strains that were undetectable using standard immunoblot methods. Results showed that the conductometric response was not inhibited in 1% serum. © 2013 Elsevier B.V.
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El Ichi, S., Leon, F., Vossier, L., Marchandin, H., Errachid, A., Coste, J., … Fournier-Wirth, C. (2014). Microconductometric immunosensor for label-free and sensitive detection of Gram-negative bacteria. Biosensors and Bioelectronics, 54, 378–384. https://doi.org/10.1016/j.bios.2013.11.016
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