Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For optimal efficiency it is crucial to minimize the time and complexity of the assay protocol including target recognition, amplification, labeling and read-out. In this work, possibilities for protocol simplifications for a DNA biodetection principle relying on hybridization of magnetic nanobeads to rolling circle amplification (RCA) products are investigated. The target DNA is recognized through a padlock ligation assay resulting in DNA circles serving as templates for the RCA process. It is found that beads can be present during amplification without noticeably interfering with the enzyme used for RCA (phi29 polymerase). As a result, the bead-...
AbstractDetection of a Vibrio cholerae DNA-sequence using an optomagnetic read-out exploiting the dy...
There is an increasing need to develop novel bioassay methods for low-cost, rapid, and easy-to-use m...
We report herein the development of a simple, sensitive colorimetric magnetic nanoparticle (MNP)- en...
Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For o...
Detection of pathogens has become increasingly important, especially in the face of outbreaks and ep...
We use functionalized iron oxide magnetic multi-core particles of 100\ua0nm in size (hydrodynamic pa...
We use functionalized iron oxide magnetic multi-core particles of 100 nm in size (hydrodynamic parti...
Micro- or nanometer sized magnetic particles (beads) currently have a vast range of life science app...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
Bioassays relying on magnetic read-out using probe-tagged magnetic nanobeads are potential platforms...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
International audienceThe detection of DNA molecules by agglutination assays has suffered from a lac...
The development of ultrasensitive methods for detecting specific genes and discriminating single nuc...
This work explores several issues of importance for the development of a diagnostic method based on ...
AbstractDetection of a Vibrio cholerae DNA-sequence using an optomagnetic read-out exploiting the dy...
AbstractDetection of a Vibrio cholerae DNA-sequence using an optomagnetic read-out exploiting the dy...
There is an increasing need to develop novel bioassay methods for low-cost, rapid, and easy-to-use m...
We report herein the development of a simple, sensitive colorimetric magnetic nanoparticle (MNP)- en...
Magnetic biosensors are promising candidates for low-cost point-of-care biodiagnostic devices. For o...
Detection of pathogens has become increasingly important, especially in the face of outbreaks and ep...
We use functionalized iron oxide magnetic multi-core particles of 100\ua0nm in size (hydrodynamic pa...
We use functionalized iron oxide magnetic multi-core particles of 100 nm in size (hydrodynamic parti...
Micro- or nanometer sized magnetic particles (beads) currently have a vast range of life science app...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
Bioassays relying on magnetic read-out using probe-tagged magnetic nanobeads are potential platforms...
Magnetic nanoparticles have great potential in the biomedical and diagnostics field. Due to their sm...
International audienceThe detection of DNA molecules by agglutination assays has suffered from a lac...
The development of ultrasensitive methods for detecting specific genes and discriminating single nuc...
This work explores several issues of importance for the development of a diagnostic method based on ...
AbstractDetection of a Vibrio cholerae DNA-sequence using an optomagnetic read-out exploiting the dy...
AbstractDetection of a Vibrio cholerae DNA-sequence using an optomagnetic read-out exploiting the dy...
There is an increasing need to develop novel bioassay methods for low-cost, rapid, and easy-to-use m...
We report herein the development of a simple, sensitive colorimetric magnetic nanoparticle (MNP)- en...