A high-sensitivity assay has been developed for the detection of human topoisomerase I with single molecule resolution. The method uses magnetic sepharose beads to concentrate rolling circle products, produced by the amplification of DNA molecules circularized by topoisomerase I and detectable with a confocal microscope as single and discrete dots, once reacted with fluorescent probes. Each dot, corresponding to a single cleavage-religation event mediated by the enzyme, can be counted due to its high signal/noise ratio, allowing detection of 0.3pM enzyme and representing a valid method to detect the enzyme activity in highly diluted samples
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
In the current study, we describe a novel DNA sensor system for specific and quantitative detection ...
Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For o...
The so-called Rolling Circle Amplification allows for amplification of circular DNA structures in a ...
DNA topoisomerases are essential enzymes in the control and in the maintenance of the topological st...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
We present a Rolling-Circle-Enhance-Enzyme-Activity-Detection (REEAD) system with potential use for ...
In this article, we describe single-molecule assays using magnetic traps and we applied these assays...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
Human topoisomerase 1B is a ubiquitous and essential enzyme involved in relaxing the topological sta...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
In the current study, we describe a novel DNA sensor system for specific and quantitative detection ...
Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For o...
The so-called Rolling Circle Amplification allows for amplification of circular DNA structures in a ...
DNA topoisomerases are essential enzymes in the control and in the maintenance of the topological st...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
We present a Rolling-Circle-Enhance-Enzyme-Activity-Detection (REEAD) system with potential use for ...
In this article, we describe single-molecule assays using magnetic traps and we applied these assays...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
Human topoisomerase 1B is a ubiquitous and essential enzyme involved in relaxing the topological sta...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
In the current study, we describe a novel DNA sensor system for specific and quantitative detection ...
Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For o...