Electrochemical enzyme-linked sandwich assays on magnetic beads (MBs) refer to one of the most sensitive approaches for analysis of nonamplified nucleic acid samples, with redox enzymes being routinely used as labels. Here, we report a sensitive and inexpensive electrochemical nucleic acid sandwich assay on MBs that exploits a hydrolytic enzyme cellulase as a label, while MBs are used for preconcentration and bioseparation of analyzed samples. Binding of target DNA or RNA to capture DNA-modified MB triggers sandwich assembly and its labeling with cellulase. Application of the assembled sandwich to the electrodes covered with insulating nitrocellulose films induces film digestion by the cellulase label and pronounced changes in the electrica...
We have developed a sandwich-type enzyme-linked DNA sensor as a new electrochemical method to detect...
WOS: 000263634700028PubMed ID: 19174223An indicator-based and indicator-free magnetic assays connect...
A simple magnetic nanoparticle (MNP)-poly-enzyme nanobead sandwich assay for direct detection of ult...
Attomole (10 mol) levels of RNA and DNA isolated from beer spoilage bacterial cells Lactobacillus br...
Udgivelsesdato: MarA fast and sensitive electrochemical lipase-based sandwich hybridization assay fo...
A silicon chip-based electric detector coupled to bead-based sandwich hybridization (BBSH) is presen...
DNA ligases are essential enzymes in all cells and have been proposed as targets for novel antibioti...
Recently, several innovative designs for nucleic acid-based electrochemical sensing have appeared. ...
Currently, electrochemical nucleic acid-based biosensing methodologies involving hybridization assay...
[[abstract]]Analysis of single nucleotide substitutions (SNS) in nucleic acids is the basis for the ...
We report herein the development of a simple, sensitive colorimetric magnetic nanoparticle (MNP)- en...
This paper describes a universal paper-based electrochemical sensing platform that uses a paper modi...
In this study, a sandwich-type electrochemical enzyme-based LNA-modified DNA biosensor was developed...
A novel electrochemical approach for label-free detection of DNA primary sequence has been proposed....
WOS: 000353219700015In this report, we present a simple electrochemical detection protocol for the d...
We have developed a sandwich-type enzyme-linked DNA sensor as a new electrochemical method to detect...
WOS: 000263634700028PubMed ID: 19174223An indicator-based and indicator-free magnetic assays connect...
A simple magnetic nanoparticle (MNP)-poly-enzyme nanobead sandwich assay for direct detection of ult...
Attomole (10 mol) levels of RNA and DNA isolated from beer spoilage bacterial cells Lactobacillus br...
Udgivelsesdato: MarA fast and sensitive electrochemical lipase-based sandwich hybridization assay fo...
A silicon chip-based electric detector coupled to bead-based sandwich hybridization (BBSH) is presen...
DNA ligases are essential enzymes in all cells and have been proposed as targets for novel antibioti...
Recently, several innovative designs for nucleic acid-based electrochemical sensing have appeared. ...
Currently, electrochemical nucleic acid-based biosensing methodologies involving hybridization assay...
[[abstract]]Analysis of single nucleotide substitutions (SNS) in nucleic acids is the basis for the ...
We report herein the development of a simple, sensitive colorimetric magnetic nanoparticle (MNP)- en...
This paper describes a universal paper-based electrochemical sensing platform that uses a paper modi...
In this study, a sandwich-type electrochemical enzyme-based LNA-modified DNA biosensor was developed...
A novel electrochemical approach for label-free detection of DNA primary sequence has been proposed....
WOS: 000353219700015In this report, we present a simple electrochemical detection protocol for the d...
We have developed a sandwich-type enzyme-linked DNA sensor as a new electrochemical method to detect...
WOS: 000263634700028PubMed ID: 19174223An indicator-based and indicator-free magnetic assays connect...
A simple magnetic nanoparticle (MNP)-poly-enzyme nanobead sandwich assay for direct detection of ult...