Clostridium difficile is one of the key bacterial pathogens that cause infectious diarrhoea both in the developed and developing world. Isothermal nucleic acid amplification methods are increasingly used for identification of toxinogenic infection by clinical labs. For this purpose, we developed a low-cost microfluidic platform based on the SlipChip concept and implemented real-time isothermal recombinase polymerase amplification (RPA). The on-chip RPA assay targets the Clostridium difficile toxin B gene (tcdB) coding for toxin B, one of the proteins responsible for bacterial toxicity. The device was fabricated in clear acrylic using rapid prototyping methods. It has six replicate 500 nL reaction wells as well as two sets of 500 nL control ...
This thesis describes the development of Recombinase Polymerase Amplification (RPA) assays that can ...
Recently, pathogenic microorganisms have aroused wide public concern for their potential to cause se...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The widespread dissemination of CTX-M extended spectrum β-lactamases among Escherichia coli bacteria...
AbstractRecombinase polymerase amplification (RPA) is a new isothermal DNA amplification method that...
We report on the development of an on-chip RPA (recombinase polymerase amplification) with simultane...
Printed circuit board (PCB) technology has been recently proposed as a convenient platform for seaml...
The rapid emergence of antimicrobial resistant bacteria requires the development of new diagnostic t...
The rapid emergence of antimicrobial resistant bacteria requires the development of new diagnostic t...
Absolute, precise quantification methods expand the scope of nucleic acids research and have many pr...
A paper chip device-based recombinase polymerase amplification (RPA) method was developed for highly...
<div><p>Absolute, precise quantification methods expand the scope of nucleic acids research and have...
Syndromic panels for infectious disease have been suggested to be of value in point-of-care diagnost...
[EN] A new advancement in massive DNA-based screening in limited-resource settings is demonstrated t...
Syndromic panels for infectious disease have been suggested to be of value in point-of-care diagnost...
This thesis describes the development of Recombinase Polymerase Amplification (RPA) assays that can ...
Recently, pathogenic microorganisms have aroused wide public concern for their potential to cause se...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The widespread dissemination of CTX-M extended spectrum β-lactamases among Escherichia coli bacteria...
AbstractRecombinase polymerase amplification (RPA) is a new isothermal DNA amplification method that...
We report on the development of an on-chip RPA (recombinase polymerase amplification) with simultane...
Printed circuit board (PCB) technology has been recently proposed as a convenient platform for seaml...
The rapid emergence of antimicrobial resistant bacteria requires the development of new diagnostic t...
The rapid emergence of antimicrobial resistant bacteria requires the development of new diagnostic t...
Absolute, precise quantification methods expand the scope of nucleic acids research and have many pr...
A paper chip device-based recombinase polymerase amplification (RPA) method was developed for highly...
<div><p>Absolute, precise quantification methods expand the scope of nucleic acids research and have...
Syndromic panels for infectious disease have been suggested to be of value in point-of-care diagnost...
[EN] A new advancement in massive DNA-based screening in limited-resource settings is demonstrated t...
Syndromic panels for infectious disease have been suggested to be of value in point-of-care diagnost...
This thesis describes the development of Recombinase Polymerase Amplification (RPA) assays that can ...
Recently, pathogenic microorganisms have aroused wide public concern for their potential to cause se...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...