• Mi Re-Unir
    Búsqueda Avanzada
    JavaScript is disabled for your browser. Some features of this site may not work without it.
    Ver ítem 
    •   Inicio
    • RESULTADOS DE INVESTIGACIÓN
    • Artículos Científicos WOS y SCOPUS
    • Ver ítem
    •   Inicio
    • RESULTADOS DE INVESTIGACIÓN
    • Artículos Científicos WOS y SCOPUS
    • Ver ítem

    Phenol red as electrochemical indicator for highly sensitive quantification of SARS-CoV-2 by loop-mediated isothermal amplification detection

    Autor: 
    Rioboo-Legaspi, Pablo
    ;
    González-López, A.
    ;
    Beltrán-Sánchez, J.F.
    ;
    Cima-Cabal, María Dolores
    ;
    García-Suárez, María del Mar
    ;
    García Sánchez, A.J.
    ;
    Fernández-Otero, T.
    ;
    García Haro, J.
    ;
    Costa-Rama, Estefania
    ;
    Fernández-Abedul, M. Teresa
    Fecha: 
    2024
    Palabra clave: 
    electrochemical detection; Isothermal amplification (LAMP); low-cost analysis; phenol red; SARS-CoV-2; screen-printed electrodes; Scopus; JCR
    Revista / editorial: 
    Talanta
    Citación: 
    Rioboó-Legaspi, P., González-López, A., Beltrán-Sánchez, J. F., Cima-Cabal, M. D., García-Suárez, M. M., Sánchez, A. G., ... & Fernández-Abedul, M. T. (2024). Phenol red as electrochemical indicator for highly sensitive quantification of SARS-CoV-2 by loop-mediated isothermal amplification detection. Talanta, 266, 124963.
    Tipo de Ítem: 
    Articulo Revista Indexada
    URI: 
    https://reunir.unir.net/handle/123456789/15820
    DOI: 
    https://doi.org/10.1016/j.talanta.2023.124963
    Dirección web: 
    https://www.sciencedirect.com/science/article/abs/pii/S0039914023007142?via%3Dihub
    Resumen:
    The current COVID-19 pandemic has made patent the need for rapid and cost-effective diagnostic tests, crucial for future infectious outbreaks. Loop-mediated isothermal amplification (LAMP) is a promising and decentralized alternative to qPCR. In this work we have developed a sensitive, fast, and simple innovative methodology for quantification of SARS-CoV-2 RNA copies, combining reverse-transcription LAMP with electrochemical detection. This is based on the oxidation of phenol red (PR), a visual and electroactive LAMP indicator, which oxidation peak potential (Ep) changes with the progress of the LAMP reaction. Using that Ep shift as analytical signal, a calibration curve was obtained for fragment N1 copies of SARS-CoV2 (which provided better results than N or S fragments), with a potential shift of 16.2 mV per order of magnitude, and a practical limit of detection of 21 copies·μL−1. Moreover, the precision of Ep is excellent (RSD < 2%): 557 ± 5 mV for negative and 602 ± 7 mV for positive (2148 N fragment RNA copies·µL-1·-1) LAMP controls. This methodology has been applied to the analysis of nasopharyngeal swab samples, resulting in total concordance with clinical RT-qPCR results. Advances towards fully decentralization have been achieved by designing and fabricating a small portable heater for isothermal procedures, obtaining comparable results to those from a commercial benchtop thermal cycler.
    Mostrar el registro completo del ítem
    Ficheros en el ítem
    icon
    Nombre: Versión enviada_Phenol red as electrochemical indicator for highly sensitive quantification.pdf
    Tamaño: 1.125Mb
    Formato: application/pdf
    Ver/Abrir
    Este ítem aparece en la(s) siguiente(s) colección(es)
    • Artículos Científicos WOS y SCOPUS

    Estadísticas de uso

    Año
    2012
    2013
    2014
    2015
    2016
    2017
    2018
    2019
    2020
    2021
    2022
    2023
    2024
    2025
    Vistas
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    125
    70
    Descargas
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    0
    67
    42

    Ítems relacionados

    Mostrando ítems relacionados por Título, autor o materia.

    • Electrocatalytic Palladium Nanoclusters as Versatile Indicators of Bioassays: Rapid Electroanalytical Detection of SARS-CoV-2 by Reverse Transcription Loop-Mediated Isothermal Amplification 

      Rodríguez-Penedo, Alejandro; Rioboo-Legaspi, Pablo; González-López, Andrea; Lores-Padín, Ana; Pereiro, Rosario; García-Suárez, María del Mar; Cima-Cabal, María Dolores; Costa-Rama, Estefania; Fernández, Beatriz; Fernández-Abedul, M. Teresa (Advanced Healthcare Materials, 2023)
      Quantitative polymerase chain reaction (qPCR) is considered the gold standard for pathogen detection. However, improvement is still required, especially regarding the possibilities of decentralization. Apart from other ...
    • Electrochemical Detection for Isothermal Loop-Mediated Amplification of Pneumolysin Gene of Streptococcus pneumoniae Based on the Oxidation of Phenol Red Indicator 

      Gonzalez-Lopez, Andrea; Cima-Cabal, María Dolores; Rioboo-Legaspi, Pablo; Costa-Rama, Estefania; García-Suárez, María del Mar; Fernandez-Abedul, M. Teresa (Analytical Chemistry, 2022)
      A highly sensitive electrochemical methodology for end-point detection of loop-mediated isothermal nucleic acid amplification reactions was developed. It is based on the oxidation process of phenol red (PR), commonly used ...
    • Toxicity prediction based on artificial intelligence: A multidisciplinary overview 

      Peréz-Santín, Efren ; Rodríguez Solana, Raquel; González García, Mariano ; García-Suárez, María del Mar ; Blanco Díaz, Gerardo David ; Cima-Cabal, María Dolores ; Moreno Rojas, José Manuel; López-Sánchez, José Ignacio (John Wiley and Sons Inc, 2021)
      The use and production of chemical compounds are subjected to strong legislative pressure. Chemical toxicity and adverse effects derived from exposure to chemicals are key regulatory aspects for a multitude of industries, ...

    Mi cuenta

    AccederRegistrar

    ¿necesitas ayuda?

    Manual de UsuarioContacto: reunir@unir.net

    Listar

    todo Re-UnirComunidades y coleccionesPor fecha de publicaciónAutoresTítulosPalabras claveTipo documentoTipo de accesoEsta colecciónPor fecha de publicaciónAutoresTítulosPalabras claveTipo documentoTipo de acceso






    Aviso Legal Política de Privacidad Política de Cookies Cláusulas legales RGPD
    © UNIR - Universidad Internacional de La Rioja
     
    Aviso Legal Política de Privacidad Política de Cookies Cláusulas legales RGPD
    © UNIR - Universidad Internacional de La Rioja