In this study, an electrochemical biosensor was developed for highly sensitive and specific detection of target miRNA-155. The structure was formed by the hybridization of a tetrahedral DNA nanostructure-based biomolecular probe assembled on 3D nitrogen-doped reduced graphene oxide/gold nanoparticles (3D N-doped rGO/AuNPs) electrode surface. Upon addition of target miRNA-155, the gold and silver nanorod/thionine/complementary DNA (AuAgNR/Thi/F) was hybridized with the target, and used for signal amplification, catalyzing the reduction of Thi as an electron mediator. Due to the signal amplification by the enhanced immobilization of DNA on the surface of 3D N-doped rGO/AuNPs electrode and AuAgNR/Thi, coupling the low background signal produce...
WOS: 000401430700019In our study, graphene oxide (GO) modified graphite electrodes were used for sen...
DNA methylation is one of the well-known epigenetic mechanism which plays a crucial role in the deve...
We report the electrocatalytic activity of a new class of superparamagnetic nanoparticles, graphene...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
MicroRNAs (miRNAs) play important roles as significant biomarkers in disease diagnostics. Here, an e...
WOS: 000425560800030Graphene oxide (GO) modified disposable pencil graphite electrodes (PGEs) were d...
Paper-based biosensors are considered simple and cost-efficient sensing platforms for analytical tes...
WOS: 000373985300050In the present work, an electrochemical nucleic acid biosensor has been designed...
In the present work, an electrochemical nucleic acid biosensor has been designed for the purpose of ...
WOS: 000427246500019The development of a low-cost and disposable biosensor platform for the sensitiv...
Abstract The graphene oxide (GO) modified pencil graphite electrodes (PGEs) were utilized for electr...
WOS: 000400720800143PubMed ID: 28415412The modification of graphene oxide (GO) onto the surfaces of ...
MicroRNAs are not only important regulators of a wide range of cellular processes but are also ident...
WOS: 000401430700019In our study, graphene oxide (GO) modified graphite electrodes were used for sen...
DNA methylation is one of the well-known epigenetic mechanism which plays a crucial role in the deve...
We report the electrocatalytic activity of a new class of superparamagnetic nanoparticles, graphene...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
In this study, an electrochemical biosensor was developed for highly sensitive and specific detectio...
MicroRNAs (miRNAs) play important roles as significant biomarkers in disease diagnostics. Here, an e...
WOS: 000425560800030Graphene oxide (GO) modified disposable pencil graphite electrodes (PGEs) were d...
Paper-based biosensors are considered simple and cost-efficient sensing platforms for analytical tes...
WOS: 000373985300050In the present work, an electrochemical nucleic acid biosensor has been designed...
In the present work, an electrochemical nucleic acid biosensor has been designed for the purpose of ...
WOS: 000427246500019The development of a low-cost and disposable biosensor platform for the sensitiv...
Abstract The graphene oxide (GO) modified pencil graphite electrodes (PGEs) were utilized for electr...
WOS: 000400720800143PubMed ID: 28415412The modification of graphene oxide (GO) onto the surfaces of ...
MicroRNAs are not only important regulators of a wide range of cellular processes but are also ident...
WOS: 000401430700019In our study, graphene oxide (GO) modified graphite electrodes were used for sen...
DNA methylation is one of the well-known epigenetic mechanism which plays a crucial role in the deve...
We report the electrocatalytic activity of a new class of superparamagnetic nanoparticles, graphene...