We report that single-stranded (ss) DNA aptamers can be activated by counterions such as dodecylguanidinium (DG) to act as transporters in fluorogenic vesicles. However, their activity is independent of the presence or absence of the analyte. Dimerization into ds-DNA helices increases activity in an overadditive manner. Duplex disassembly in response to analyte binding is thus detectable as inactivation. Shortened and mismatched antiaptamers destabilize the active duplex, reduce activity, and increase the sensitivity for the analyte. Supramolecular polymerization of aptamer/antiaptamer duplexes with "sticky ends" is shown to further increase activity without losses in sensitivity for the analyte. The results demonstrate that the principles ...
We develop a novel amplified split aptamer sensor for highly sensitive detection and imaging of smal...
Aptamers comprise a range of molecular recognition scaffolds that can be engineered to bind to a leg...
Due to the predictable conformation and programmable Watson–Crick base-pairing interactions, DNA has...
Here, we describe a new fluorescence polarization aptamer assay (FPAA) strategy which is based on th...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
Aptamer-based fluorescence anisotropy (FA) assays have attracted great interest in recent years. How...
The capability to screen a range of proteins at the single-molecule level with enhanced selectivity ...
We report that amphiphilic counterions can enable DNA to act as cation carrier, enzyme detector and ...
Single molecule detection methods, such as nanopore sensors have found increasing importance in appl...
honors thesisCollege of ScienceChemistryJennifer HeemstraDeoxyribonucleic acid (DNA) provides many e...
Activated by amphiphilic anions, cationic oligo- and polymers can phase transfer into and across bul...
AbstractBackground: In vitro selection experiments with pools of random-sequence nucleic acids have ...
A universal aptamer-based sensing strategy is proposed using DNA modified nanocarriers and Resistive...
A strategy to extend the detection range of weakly-binding targets is reported that takes advantage ...
We develop a novel amplified split aptamer sensor for highly sensitive detection and imaging of smal...
Aptamers comprise a range of molecular recognition scaffolds that can be engineered to bind to a leg...
Due to the predictable conformation and programmable Watson–Crick base-pairing interactions, DNA has...
Here, we describe a new fluorescence polarization aptamer assay (FPAA) strategy which is based on th...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
Aptamer-based fluorescence anisotropy (FA) assays have attracted great interest in recent years. How...
The capability to screen a range of proteins at the single-molecule level with enhanced selectivity ...
We report that amphiphilic counterions can enable DNA to act as cation carrier, enzyme detector and ...
Single molecule detection methods, such as nanopore sensors have found increasing importance in appl...
honors thesisCollege of ScienceChemistryJennifer HeemstraDeoxyribonucleic acid (DNA) provides many e...
Activated by amphiphilic anions, cationic oligo- and polymers can phase transfer into and across bul...
AbstractBackground: In vitro selection experiments with pools of random-sequence nucleic acids have ...
A universal aptamer-based sensing strategy is proposed using DNA modified nanocarriers and Resistive...
A strategy to extend the detection range of weakly-binding targets is reported that takes advantage ...
We develop a novel amplified split aptamer sensor for highly sensitive detection and imaging of smal...
Aptamers comprise a range of molecular recognition scaffolds that can be engineered to bind to a leg...
Due to the predictable conformation and programmable Watson–Crick base-pairing interactions, DNA has...