Nucleic acid-based aptamers offer many potential advantages relative to antibodies and other protein-based affinity reagents, including facile chemical synthesis, reversible folding, improved thermal stability and lower cost. However, their selection requires significant time and resources and selections often fail to yield molecules with affinities sufficient for molecular diagnostics or therapeutics. Toward a selection technique that can efficiently and reproducibly generate high performance aptamers, we have developed a microfluidic selection process (M-SELEX) that can be used to obtain high affinity aptamers against diverse protein targets. Here, we isolated DNA aptamers against three protein targets with different isoelectric points (p...
Aptamers represent interesting bioreceptor alternatives to antibodies when developing a bioassay and...
device that utilizes affinity microcolumn chromatography to complement downstream plate-based proces...
We present a microfluidic approach to integrated isolation of DNA aptamers via systematic evolution ...
Nucleic acid-based aptamers offer many potential advantages relative to antibodies and other protein...
Biological reagents that recognize target molecules with high affinity and specificity are widely us...
We describe the integration of microfluidic selection with high-throughput DNA sequencing technology...
Aptamers are an emerging class of molecules that are valued for their ability to bind with high affi...
Aptamers are nucleic acid-based reagents that bind to target molecules with high affinity and specif...
Single-stranded oligonucleotide aptamers have attracted great attention in the past decade because o...
University of Minnesota Ph.D. dissertation. August 2012. Major: Chemistry. Advisor: Michael T. Bowse...
<div><p>A new DNA aptamer targeting Protein A is presented. The aptamer was selected by use of the F...
Molecular recognition of disease biomarkers is essential for the detection, monitoring, and treatmen...
In DNA aptamer selection, existing methods do not discriminate aptamer sequences based on their bind...
A new DNA aptamer targeting Protein A is presented. The aptamer was selected by use of the FluMag-SE...
Aptamers are sequences of single-strand oligonucleotides (DNA or RNA) with potential binding capabil...
Aptamers represent interesting bioreceptor alternatives to antibodies when developing a bioassay and...
device that utilizes affinity microcolumn chromatography to complement downstream plate-based proces...
We present a microfluidic approach to integrated isolation of DNA aptamers via systematic evolution ...
Nucleic acid-based aptamers offer many potential advantages relative to antibodies and other protein...
Biological reagents that recognize target molecules with high affinity and specificity are widely us...
We describe the integration of microfluidic selection with high-throughput DNA sequencing technology...
Aptamers are an emerging class of molecules that are valued for their ability to bind with high affi...
Aptamers are nucleic acid-based reagents that bind to target molecules with high affinity and specif...
Single-stranded oligonucleotide aptamers have attracted great attention in the past decade because o...
University of Minnesota Ph.D. dissertation. August 2012. Major: Chemistry. Advisor: Michael T. Bowse...
<div><p>A new DNA aptamer targeting Protein A is presented. The aptamer was selected by use of the F...
Molecular recognition of disease biomarkers is essential for the detection, monitoring, and treatmen...
In DNA aptamer selection, existing methods do not discriminate aptamer sequences based on their bind...
A new DNA aptamer targeting Protein A is presented. The aptamer was selected by use of the FluMag-SE...
Aptamers are sequences of single-strand oligonucleotides (DNA or RNA) with potential binding capabil...
Aptamers represent interesting bioreceptor alternatives to antibodies when developing a bioassay and...
device that utilizes affinity microcolumn chromatography to complement downstream plate-based proces...
We present a microfluidic approach to integrated isolation of DNA aptamers via systematic evolution ...