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Improving aptamer selection efficiency through volume dilution, magnetic concentration, and continuous washing in microfluidic channels.


ABSTRACT: The generation of nucleic acid aptamers with high affinity typically entails a time-consuming, iterative process of binding, separation, and amplification. It would therefore be beneficial to develop an efficient selection strategy that can generate these high-quality aptamers rapidly, economically, and reproducibly. Toward this goal, we have developed a method that efficiently generates DNA aptamers with slow off-rates. This methodology, called VDC-MSELEX, pairs the volume dilution challenge process with microfluidic separation for magnetic bead-assisted aptamer selection. This method offers improved aptamer selection efficiencies through the application of highly stringent selection conditions: it retrieves a small number (<10(6)) of magnetic beads suspended in a large volume (>50 mL) and concentrates them into a microfluidic chamber (8 ?L) with minimal loss for continuous washing. We performed three rounds of the VDC-MSELEX using streptavidin (SA) as the target and obtained new DNA aptamer sequences with low nanomolar affinity that specifically bind to the SA proteins.

SUBMITTER: Oh SS 

PROVIDER: S-EPMC3165111 | biostudies-literature | 2011 Sep

REPOSITORIES: biostudies-literature

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Improving aptamer selection efficiency through volume dilution, magnetic concentration, and continuous washing in microfluidic channels.

Oh Seung Soo SS   Ahmad Kareem M KM   Cho Minseon M   Kim Seon S   Xiao Yi Y   Soh H Tom HT  

Analytical chemistry 20110803 17


The generation of nucleic acid aptamers with high affinity typically entails a time-consuming, iterative process of binding, separation, and amplification. It would therefore be beneficial to develop an efficient selection strategy that can generate these high-quality aptamers rapidly, economically, and reproducibly. Toward this goal, we have developed a method that efficiently generates DNA aptamers with slow off-rates. This methodology, called VDC-MSELEX, pairs the volume dilution challenge pr  ...[more]

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