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LA UDES PUBLICA
Fecha de publicación:
2021-01-01
Tipo:
Article
Número de artículo:
2559
Identificación:
SCOPUS_ID:85105178536
eID:
2-s2.0-85105178536
Nombre de la revista:
Molecules
Título del artículo:

A bioinspired peptide in tir protein as recognition molecule on electrochemical biosensors for the detection of e. Coli o157:H7 in an aqueous matrix

Currently, the detection of pathogens such as Escherichia coli through instrumental alternatives with fast response and excellent sensitivity and selectivity are being studied. Biosensors are systems consisting of nanomaterials and biomolecules that exhibit remarkable properties such as simplicity, portable, affordable, user-friendly, and deliverable to end-users. For this, in this work we report for the first time, to our knowledge, the bioinformatic design of a new peptide based on TIR protein, a receptor of Intimin membrane protein which is characteristic of E. coli. This peptide (named PEPTIR-1.0) was used as recognition element in a biosensor based on AuNPs-modified screen-printed electrodes for the detection of E. coli. The morphological and electrochemical characteristics of the biosensor obtained were studied. Results show that the biosensor can detect the bacteria with limits of detection and quantification of 2 and 6 CFU/mL, respectively. Moreover, the selectivity of the system is statistically significant towards the detection of the pathogen in the presence of other microorganisms such as P. aeruginosa and S. aureus. This makes this new PEPTIR-1.0 based biosensor can be used in the rapid, sensitive, and selective detection of E. coli in aqueous matrices.

Autor(es) UDES:
Ropero-Vega J.L., Redondo-Ortega J.F., Galvis-Curubo Y.J., Rondón-Villarreal P., Flórez-Castillo J.M.
Autor Principal:
Ropero-Vega J.L.
Áreas del conocimiento:
Analytical Chemistry, Chemistry (miscellaneous), Molecular Medicine, Pharmaceutical Science, Drug Discovery, Physical and Theoretical Chemistry, Organic Chemistry
Acerca de la revista donde se publicó este artículo:

Molecules

Cuartil Q1
Ranking
7059
Tipo
Journal
eISSN
14203049
Región
Western Europe
País
Switzerland
Volumen
26
Cobertura
1996-2022
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