There remains a great challenge in the sensitive detection of microRNA because of the short length and low abundance of microRNAs in cells. Here, we have demonstrated an ultrasensitive detection platform for microRNA by combining the tetrahedral DNA nanostructure probes and hybridization chain reaction (HCR) amplification. The detection limits for DNA and microRNA are 100 aM and 10 aM (corresponding to 600 microRNAs in a 100 μL sample), respectively. Compared to the widely used supersandwich amplification, the detection limits are improved by 3 orders of magnitude. The uncontrolled surface immobilization and consumption of target molecules that limit the amplification efficiency of supersandwich are eliminated in our platform. Taking advant...
The early and rapid diagnosis of acute myocardial infarction (AMI) is of great significance to its t...
none2noTriple helix DNA has been exploited in building molecular switches, based on Watson–Crick and...
Triple helix DNA has been exploited in building molecular switches, based on Watson–Crick and Hoogst...
MicroRNAs are not only important regulators of a wide range of cellular processes but are also ident...
A highly sensitive and multiple microRNA (miRNA) detection method by combining three-dimensional (3D...
Because of the short size and low abundance of microRNAs, it is challenging to develop fast, inexpen...
MicroRNAs (miRNAs) play important roles as significant biomarkers in disease diagnostics. Here, an e...
DNA biosensors could overcome some of the common drawbacks of lab-based techniques for nucleic acids...
Some of the possible perspective advantages of the uptake of nucleic acids biosensor technology are ...
none2noDNA biosensors could overcome some of the common drawbacks of lab-based techniques for nuclei...
DNA biosensors could overcome some of the common drawbacks of lab-based techniques for nucleic acids...
Some of the possible perspective advantages of the uptake of nucleic acids biosensor technology are ...
Nucleic acids have been engineered to participate in a wide variety of tasks. Among them, the enzyme...
none2noThe triple helix is an alternative structure adopted by nucleic acids based on Watson–Crick a...
none2noSome of the possible perspective advantages of the uptake of nucleic acids biosensor technolo...
The early and rapid diagnosis of acute myocardial infarction (AMI) is of great significance to its t...
none2noTriple helix DNA has been exploited in building molecular switches, based on Watson–Crick and...
Triple helix DNA has been exploited in building molecular switches, based on Watson–Crick and Hoogst...
MicroRNAs are not only important regulators of a wide range of cellular processes but are also ident...
A highly sensitive and multiple microRNA (miRNA) detection method by combining three-dimensional (3D...
Because of the short size and low abundance of microRNAs, it is challenging to develop fast, inexpen...
MicroRNAs (miRNAs) play important roles as significant biomarkers in disease diagnostics. Here, an e...
DNA biosensors could overcome some of the common drawbacks of lab-based techniques for nucleic acids...
Some of the possible perspective advantages of the uptake of nucleic acids biosensor technology are ...
none2noDNA biosensors could overcome some of the common drawbacks of lab-based techniques for nuclei...
DNA biosensors could overcome some of the common drawbacks of lab-based techniques for nucleic acids...
Some of the possible perspective advantages of the uptake of nucleic acids biosensor technology are ...
Nucleic acids have been engineered to participate in a wide variety of tasks. Among them, the enzyme...
none2noThe triple helix is an alternative structure adopted by nucleic acids based on Watson–Crick a...
none2noSome of the possible perspective advantages of the uptake of nucleic acids biosensor technolo...
The early and rapid diagnosis of acute myocardial infarction (AMI) is of great significance to its t...
none2noTriple helix DNA has been exploited in building molecular switches, based on Watson–Crick and...
Triple helix DNA has been exploited in building molecular switches, based on Watson–Crick and Hoogst...