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1.
Biosens Bioelectron ; 141: 111331, 2019 Sep 15.
Artículo en Inglés | MEDLINE | ID: mdl-31233985

RESUMEN

This study describes the construction of highly-sensitive photo-electrochemical (PEC) immunosensor for the detection of neuron-specific enolase (NSE). The biosensing platform is comprised of photo-active NiWO4 nanostructures, in-situ-grown over a conductive substrate (indium tin oxide) using a low-temperature template-based co-precipitation approach. The discussed approach enables the formation of discrete, yet morphologically-analogous, nanostructures with complete coverage (pinhole-free) of the electrode surface. The in-situ-grown nanostructure possess dense population with sharp saw-blade like morphological features that can support substantial immobilisation of anti-NSE agent. The constructed platform demonstrated excellent photo-catalytic activity towards uric acid (UA) which served as the base for the Electrochemical -mechanism (EC) based PEC inhibition sensing. The detection of NSE, relied on its obstruction in analytical signal observed for the photo-oxidation of UA after binding to the electrode surface via protein-antibody interaction. The constructed PEC immunosensor exhibits signal sensitivity up to 0.12 ng mL-1 of NSE with excellent signal reproducibility and electrode replicability. Moreover, the constructed platform was successfully used for NSE determination in human serum samples.


Asunto(s)
Técnicas Biosensibles/métodos , Nanoestructuras/química , Níquel/química , Óxidos/química , Fosfopiruvato Hidratasa/sangre , Tungsteno/química , Técnicas Electroquímicas/métodos , Electrodos , Humanos , Inmunoensayo/métodos , Luz , Nanoestructuras/ultraestructura , Nanotecnología/métodos , Fosfopiruvato Hidratasa/análisis , Compuestos de Estaño/química
2.
Anal Chim Acta ; 948: 30-39, 2016 Dec 15.
Artículo en Inglés | MEDLINE | ID: mdl-27871607

RESUMEN

This study describes sensitive determination of atropine using glassy carbon electrodes (GCE) modified with Co3O4 nanostructures. The as-synthesised nanostructures were grown using cysteine (CYS), glutathione (GSH) and histidine (HYS) as effective templates under hydrothermal action. The obtained morphologies revealed interesting structural features, including both cavity-based and flower-shaped structures. The as-synthesised morphologies were noted to actively participate in electro-catalysis of atropine (AT) drug where GSH-assisted structures exhibited the best signal response in terms of current density and over-potential value. The study also discusses the influence of functional groups on the signal sensitivity of atropine electro-oxidation. The functionalisation was carried with the amino acids originally used as effective templates for the growth of Co3O4 nanostructures. The highest increment was obtained when GSH was used as the surface functionalising agent. The GSH-functionalised Co3O4-modified electrode was utilised for the electro-chemical sensing of AT in a concentration range of 0.01-0.46 µM. The developed sensor exhibited excellent working linearity (R2 = 0.999) and signal sensitivity up to 0.001 µM of AT. The noted high sensitivity of the sensor is associated with the synergy of superb surface architectures and favourable interaction facilitating the electron transfer kinetics for the electro-catalytic oxidation of AT. Significantly, the developed sensor demonstrated excellent working capability when used for AT detection in human urine samples with strong anti-interference potential against common co-existing species, such as glucose, fructose, cysteine, uric acid, dopamine and ascorbic acid.


Asunto(s)
Atropina/análisis , Cobalto/química , Nanopartículas del Metal/química , Óxidos/química , Atropina/orina , Técnicas Biosensibles , Técnicas Electroquímicas , Electrodos , Glutatión/química , Humanos , Límite de Detección , Microscopía Electrónica de Rastreo , Oxidación-Reducción , Espectroscopía Infrarroja por Transformada de Fourier , Difracción de Rayos X
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