Development of an Immunocapture-Based Polymeric Optical Fiber Sensor for Bacterial Detection in Water

Author:

Lopes Rafaela Nascimento12,Pinto Paulo Henrique Silva1,Vargas Juan David Lopez3ORCID,Dante Alex1ORCID,Macrae Andrew2ORCID,Allil Regina Célia Barros1,Werneck Marcelo Martins13ORCID

Affiliation:

1. Electrical Engineering Program, COPPE, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-598, Brazil

2. Programa de Pós-Graduação em Biotecnologia Vegetal e Bioprocessos, CCS, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-598, Brazil

3. Nanotechnology Engineering Program, COPPE, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-598, Brazil

Abstract

Conventional methods for pathogen detection in water rely on time-consuming enrichment steps followed by biochemical identification strategies, which require assay times ranging from 24 hours to a week. However, in recent years, significant efforts have been made to develop biosensing technologies enabling rapid and close-to-real-time detection of waterborne pathogens. In previous studies, we developed a plastic optical fiber (POF) immunosensor using an optoelectronic configuration consisting of a U-Shape probe connected to an LED and a photodetector. Bacterial detection was evaluated with the immunosensor immersed in a bacterial suspension in water with a known concentration. Here, we report on the sensitivity of a new optoelectronic configuration consisting of two POF U-shaped probes, one as the reference and the other as the immunosensor, for the detection of Escherichia coli. In addition, another methos of detection was tested where the sensors were calibrated in the air, before being immersed in a bacterial suspension and then read in the air. This modification improved sensor sensitivity and resulted in a faster detection time. After the immunocapture, the sensors were DAPI-stained and submitted to confocal microscopy. The histograms obtained confirmed that the responses of the immunosensors were due to the bacteria. This new sensor detected the presence of E. coli at 104 CFU/mL in less than 20 min. Currently, sub-20 min is faster than previous studies using fiber-optic based biosensors. We report on an inexpensive and faster detection technology when compared with conventional methods.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil

Publisher

MDPI AG

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