We report a simple DNA sensor device, using a combination of binding and conformational switching, capable of rapid detection of specific single nucleotide polymorphisms in an unlabelled nucleic acid target sequence. The detection is demonstrated using fluorescence lifetime measurements in a high-throughput micro plate reader instrument based on the time-correlated single-photon counting technique. The sensor design and instrumental architecture are capable of detecting perturbations in the molecular structure of the probe–target complex (which is similar to that of a Holliday junction), due to a single base pair mismatch in a synthetic target. Structural information, including fluorophore separations, is obtained using time-resolved Förste...
The rapid identification and verification of single nucleotide polymorphisms (SNPs) were demonstrate...
The work presented here deals with the optimization of a strategy for detection of single nucleotide...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...
We report a simple DNA sensor device, using a combination of binding and conformational switching, c...
We investigate the properties of a simple DNA-based nanodevice capable of detecting single nucleotid...
AbstractThis article presents a new, highly sensitive method for the identification of single nucleo...
This paper investigates the properties of a simple DNA-based nanodevice capable of detecting single ...
Detection of single base pair mutations in an unlabelled nucleic acid target sequence is demonstrate...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
Single-nucleotide polymorphisms (SNPs) are the most common form of DNA sequence variation. There is ...
[[abstract]]We have developed a universal molecular beacon (T7-MB-T7) for the detection of single-nu...
We present a new type of DNA switch, based on the Holliday junction, that uses a combination of bind...
Although various strategies have been reported for single-nucleotide polymorphisms (SNPs) detection,...
The rapid identification and verification of single nucleotide polymorphisms (SNPs) were demonstrate...
The work presented here deals with the optimization of a strategy for detection of single nucleotide...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...
We report a simple DNA sensor device, using a combination of binding and conformational switching, c...
We investigate the properties of a simple DNA-based nanodevice capable of detecting single nucleotid...
AbstractThis article presents a new, highly sensitive method for the identification of single nucleo...
This paper investigates the properties of a simple DNA-based nanodevice capable of detecting single ...
Detection of single base pair mutations in an unlabelled nucleic acid target sequence is demonstrate...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
Single-nucleotide polymorphisms (SNPs) are the most common form of DNA sequence variation. There is ...
[[abstract]]We have developed a universal molecular beacon (T7-MB-T7) for the detection of single-nu...
We present a new type of DNA switch, based on the Holliday junction, that uses a combination of bind...
Although various strategies have been reported for single-nucleotide polymorphisms (SNPs) detection,...
The rapid identification and verification of single nucleotide polymorphisms (SNPs) were demonstrate...
The work presented here deals with the optimization of a strategy for detection of single nucleotide...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...