DNAs are one of the most fundamental molecules for life. Quantification of specific sequences is of great importance for biological research and clinical diagnosis. In order to determine extremely low abundant DNAs, we herein develop a novel electrochemical genosensor taking advantage of a smart bipedal DNA walking machine. Magnetic nanomaterials are first employed to enrich target DNA. Strand displacement amplification initiated by target DNA is then designed on the surface of the nanomaterials, the products of which can be used to trigger bipedal DNA walking on the surface of an electrode. Benefiting from triple amplification, ultrahigh sensitivity is achieved for electrochemical analysis of DNA. More importantly, the proposed strategy op...
Herein, we report a DNA nanomachine, built from a DNA-functionalized gold nanoparticle (DNA–AuNP), w...
As an alternative to most of the reported nucleic acid amplification-based electrochemical DNA biose...
Different from conventional DNA walkers, we designed a telomerase-triggered three-dimensional DNA wa...
Intelligent DNA walking machines have become a great hot spot in biosensing, but the walking efficie...
Herein, a dual microRNA (miRNA) powered bi-directional DNA walking machine with precise control was ...
WOS: 000252202100005PubMed ID: 18371645DNA sensing strategies have recently been varieted with the n...
A DNA walker as a new molecular machine can walk on defined tracks to directly generate signal indic...
In this study, an electrochemiluminescence (ECL) regenerated biosensor was reported to sensitively d...
In this study, two kinds of sensitive biosensors based on a multipedal DNA walker along a three-dime...
Synthetic artificial DNA probes are excellent architectural scaffolds which can be assembled into va...
Electrochemistry-based sensors offer sensitivity, selectivity and low cost for the detection of sele...
Electrochemistry-based sensors offer sensitivity, selectivity and low cost for the detection of sele...
With the increasing importance of accurate and early disease diagnosis and the development of person...
Many expts. have now shown that double helical DNA can serve as a conduit for efficient charge trans...
We describe an ultrasensitive electrochemical genosensor based on gold nanoparticles and cobalt-porp...
Herein, we report a DNA nanomachine, built from a DNA-functionalized gold nanoparticle (DNA–AuNP), w...
As an alternative to most of the reported nucleic acid amplification-based electrochemical DNA biose...
Different from conventional DNA walkers, we designed a telomerase-triggered three-dimensional DNA wa...
Intelligent DNA walking machines have become a great hot spot in biosensing, but the walking efficie...
Herein, a dual microRNA (miRNA) powered bi-directional DNA walking machine with precise control was ...
WOS: 000252202100005PubMed ID: 18371645DNA sensing strategies have recently been varieted with the n...
A DNA walker as a new molecular machine can walk on defined tracks to directly generate signal indic...
In this study, an electrochemiluminescence (ECL) regenerated biosensor was reported to sensitively d...
In this study, two kinds of sensitive biosensors based on a multipedal DNA walker along a three-dime...
Synthetic artificial DNA probes are excellent architectural scaffolds which can be assembled into va...
Electrochemistry-based sensors offer sensitivity, selectivity and low cost for the detection of sele...
Electrochemistry-based sensors offer sensitivity, selectivity and low cost for the detection of sele...
With the increasing importance of accurate and early disease diagnosis and the development of person...
Many expts. have now shown that double helical DNA can serve as a conduit for efficient charge trans...
We describe an ultrasensitive electrochemical genosensor based on gold nanoparticles and cobalt-porp...
Herein, we report a DNA nanomachine, built from a DNA-functionalized gold nanoparticle (DNA–AuNP), w...
As an alternative to most of the reported nucleic acid amplification-based electrochemical DNA biose...
Different from conventional DNA walkers, we designed a telomerase-triggered three-dimensional DNA wa...