A novel solid phase extraction technique is described where DNA is bound and eluted from magnetic silica beads in a manner where efficiency is dependent on the magnetic manipulation of the beads and not on the flow of solution through a packed bed. The utility of this technique in the isolation of reasonably pure, PCR-amplifiable DNA from complex samples is shown by isolating DNA from whole human blood, and subsequently amplifying a fragment of the beta-globin gene. By effectively controlling the movement of the solid phase in the presence of a static sample, the issues associated with reproducibly packing a solid phase in a microchannel and maintaining consistent flow rates are eliminated. The technique described here is rapid, simple, and...
Over the recent years, next generation sequencing and microarray technologies have revolutionized sc...
DNA extraction was carried out on silica-based monoliths within a microfluidic device. Solid-phase D...
PubMed ID: 26142220A protocol for the extraction of DNA from ancient skeletal material was developed...
A novel solid phase extraction technique is described where DNA is bound and eluted from magnetic si...
A silica-based solid-phase extraction system suitable for incorporation into a microchip platform (m...
A microchip solid-phase extraction method for purification of DNA from biological samples, such as b...
Abstract: Magnetic separation technology, using magnetic particles, is quick and easy method for se...
Polymerase chain reaction (PCR) techniques are used increasingly for the diagnosis of Mycobacterium ...
We report a fully integrated, pathogen-specific DNA extraction device utilizing centrifugal microflu...
International audienceMiniaturized devices for the extraction of DNA have been used for assessing ge...
Deoxyribonucleic acid (DNA) extraction or sample preparation from biological sample (whole blood) fo...
With a development of molecular biology methods it is an increasing interest in new procedures of DN...
A simple, rapid method for isolating human DNA has been developed, which can be routinely used in cl...
DNA preserved in ancient bones, teeth and sediments is typically highly fragmented and present only ...
Isolating DNA is crucial in genetic laboratories. I tis the first method of further steps to obtain ...
Over the recent years, next generation sequencing and microarray technologies have revolutionized sc...
DNA extraction was carried out on silica-based monoliths within a microfluidic device. Solid-phase D...
PubMed ID: 26142220A protocol for the extraction of DNA from ancient skeletal material was developed...
A novel solid phase extraction technique is described where DNA is bound and eluted from magnetic si...
A silica-based solid-phase extraction system suitable for incorporation into a microchip platform (m...
A microchip solid-phase extraction method for purification of DNA from biological samples, such as b...
Abstract: Magnetic separation technology, using magnetic particles, is quick and easy method for se...
Polymerase chain reaction (PCR) techniques are used increasingly for the diagnosis of Mycobacterium ...
We report a fully integrated, pathogen-specific DNA extraction device utilizing centrifugal microflu...
International audienceMiniaturized devices for the extraction of DNA have been used for assessing ge...
Deoxyribonucleic acid (DNA) extraction or sample preparation from biological sample (whole blood) fo...
With a development of molecular biology methods it is an increasing interest in new procedures of DN...
A simple, rapid method for isolating human DNA has been developed, which can be routinely used in cl...
DNA preserved in ancient bones, teeth and sediments is typically highly fragmented and present only ...
Isolating DNA is crucial in genetic laboratories. I tis the first method of further steps to obtain ...
Over the recent years, next generation sequencing and microarray technologies have revolutionized sc...
DNA extraction was carried out on silica-based monoliths within a microfluidic device. Solid-phase D...
PubMed ID: 26142220A protocol for the extraction of DNA from ancient skeletal material was developed...