Optical fiber immunosensors based on surface plasmon resonance for the detection of Escherichia coli

Author:

Oliveira Sandro C.12ORCID,Soares Simone12,Rodrigues Andreia C. M.2,Gonçalves Bárbara V.3,Soares Amadeu M. V. M.2,Santos Nuno2,Kumar Santosh4ORCID,Almeida Pedro35,Marques Carlos1ORCID

Affiliation:

1. CICECO – Aveiro Institute of Materials, Physics Department, University of Aveiro

2. University of Aveiro

3. NOVA University of Lisbon

4. K L Deemed to be University, Dept. of Electronics and Comm. Engg. Vijayawada

5. Polytechnic University of Lisbon

Abstract

Every year, millions of people suffer some form of illness associated with the consumption of contaminated food. Escherichia coli (E. coli), found in the intestines of humans and other animals, is commonly associated with various diseases, due to the existence of pathogenic strains. Strict monitoring of food products for human consumption is essential to ensure public health, but traditional cell culture-based methods are associated with long waiting times and high costs. New approaches must be developed to achieve cheap, fast, and on-site monitoring. Thus, in this work, we developed optical fiber sensors based on surface plasmon resonance. Gold and cysteamine-coated fibers were functionalized with anti-E. coli antibody and tested using E. coli suspensions with concentrations ranging from 1 cell/mL to 105 cells/mL. An average logarithmic sensitivity of 0.21 ± 0.01 nm/log(cells/mL) was obtained for three independent assays. An additional assay revealed that including molybdenum disulfide resulted in an increase of approximately 50% in sensitivity. Specificity and selectivity were also evaluated, and the sensors were used to analyze contaminated water samples, which verified their promising applicability in the aquaculture field.

Funder

Fundação para a Ciência e a Tecnologia

Publisher

Optica Publishing Group

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