Detalhes do Documento

An ultrasensitive human cardiac troponin T graphene screen-printed electrode based on electropolymerized-molecularly imprinted conducting polymer

Autor(es): Silva, Bárbara V.M. ; Rodríguez, Blanca A.G. ; Sales, Goreti F. ; Sotomayor, Maria Del Pilar T. [UNESP] ; Dutra, Rosa F.

Data: 2018

Identificador Persistente: http://hdl.handle.net/11449/177571

Origem: Oasisbr

Assunto(s): Acid carboxylic-3-pyrrole; Cardiac troponin T; Graphene; Molecularly imprinted polymer; Point-of-care testing; Pyrrole; Acid carboxylic-3-pyrrole; Acid carboxylic-3-pyrrole; Cardiac troponin T; Cardiac troponin T; Graphene; Graphene; Molecularly imprinted polymer; Molecularly imprinted polymer; Point-of-care testing; Point-of-care testing; Pyrrole; Pyrrole


Descrição

Made available in DSpace on 2018-12-11T17:26:01Z (GMT). No. of bitstreams: 0 Previous issue date: 2016-03-15

A nano-molecularly imprinted polymer (N-MIP) assembled on a screen-printed electrode for the cardiac troponin T (cTnT) was developed. The biomimetic surface was obtained by a co-polymer matrix assembled on the reduced graphene oxide (RGO) electrode surface. The cTnT active sites were engineered using pyrrole and carboxylated pyrrole that was one-step electropolymerized jointly with cTnT by cyclic voltammetry. The stepwise preparation of the biomimetic surface was characterized by cyclic and differential pulse voltammetries using the ferrocyanide/ferricyanide as redox probe. Structural and morphological characterization was also performed. The optimal relation of pyrrole and pyrrole-3-acid carboxylic to perform the cTnT biomimetic nanosurface was obtained at 1:5 ratio. The analytical performance of cTnT N-MIP performed by differential pulse voltammetry showed a linear range from 0.01 to 0.1ngmL-1 (r=0.995, p«0.01), with a very low limit of detection (0.006ngmL-1). The synergic effect of conductive polymer and graphene forming 3D structures of reactive sites resulted in a N-MIP with excellent affinity to cTnT binding (KD=7.3 10-13molL-1). The N-MIP proposed is based on a simple method of antibody obtaining with a large potential for point-of-care testing applications.

Biomedical Engineering Laboratory Federal University of Pernambuco

BioMark/ISEP School of Engineering Polytechnic Institute of Porto

Chemistry Institute State University of São Paulo (UNESP)

Chemistry Institute State University of São Paulo (UNESP)

Tipo de Documento Artigo científico
Idioma Inglês
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