A nanocomplex was developed for molecular sensing in living cells, based on the fluorophore-labeled aptamer and the polydopamine nanospheres (PDANS). Due to the interaction between ssDNA and PDANS, the aptamer was adsorbed onto the surface of PDANS forming the aptamer/PDANS nanocomplex, and the fluorescence was quenched by PDANS through Förster resonance energy transfer (FRET). In vitro assay, the introduction of adenosine triphosphate (ATP) led to the dissociation of the aptamer from the PDANS and the recovery of the fluorescence. The retained fluorescence of the nanocomplex was found to be linear with the concentration of ATP in the range of 0.01–2 mM, and the nanocomplex was highly selective toward ATP. For the strong protecting capabil...
Here, we propose simple diamond functionalization by carboxyl termination for adenosine triphosphate...
Functional nucleic acid (FNA)-based sensing systems have been developed for efficient detection of a...
Owing to the significant roles of adenosine triphosphate (ATP) in diverse biological processes, ATP ...
In this work, a novel and sensitive fluorescent biosensor based on polydopamine coated Zr-based meta...
Fluorescent probes physisorbed on nanomaterials have emerged as a kind of useful and facile sensing ...
We develop a novel amplified split aptamer sensor for highly sensitive detection and imaging of smal...
Simultaneous monitoring of the expression, distribution, and dynamics of biological molecules in liv...
Simultaneous monitoring of the expression, distribution, and dynamics of biological molecules in liv...
Aptamers are unique single-stranded oligonucleic acids that can recognize some biomolecules with hig...
A fluorescence resonance energy transfer (FRET)- based aptamer biosensor (aptasensor) for sensitive ...
DNA-functionalized nanomaterials, such as various 2D materials, metal oxides, and gold nanoparticles...
Adenosine triphosphate (ATP) is a universal source of energy for all living organisms. It plays a fu...
To date, a few of DNAzyme-based sensors have been successfully developed in living cells; however, t...
We report a sensitively amplified electrochemical aptasensor using adenosine triphosphate (ATP) as a...
Fluorescent aptamer probes physisorbed on graphene oxide (GO) have recently emerged as a useful sens...
Here, we propose simple diamond functionalization by carboxyl termination for adenosine triphosphate...
Functional nucleic acid (FNA)-based sensing systems have been developed for efficient detection of a...
Owing to the significant roles of adenosine triphosphate (ATP) in diverse biological processes, ATP ...
In this work, a novel and sensitive fluorescent biosensor based on polydopamine coated Zr-based meta...
Fluorescent probes physisorbed on nanomaterials have emerged as a kind of useful and facile sensing ...
We develop a novel amplified split aptamer sensor for highly sensitive detection and imaging of smal...
Simultaneous monitoring of the expression, distribution, and dynamics of biological molecules in liv...
Simultaneous monitoring of the expression, distribution, and dynamics of biological molecules in liv...
Aptamers are unique single-stranded oligonucleic acids that can recognize some biomolecules with hig...
A fluorescence resonance energy transfer (FRET)- based aptamer biosensor (aptasensor) for sensitive ...
DNA-functionalized nanomaterials, such as various 2D materials, metal oxides, and gold nanoparticles...
Adenosine triphosphate (ATP) is a universal source of energy for all living organisms. It plays a fu...
To date, a few of DNAzyme-based sensors have been successfully developed in living cells; however, t...
We report a sensitively amplified electrochemical aptasensor using adenosine triphosphate (ATP) as a...
Fluorescent aptamer probes physisorbed on graphene oxide (GO) have recently emerged as a useful sens...
Here, we propose simple diamond functionalization by carboxyl termination for adenosine triphosphate...
Functional nucleic acid (FNA)-based sensing systems have been developed for efficient detection of a...
Owing to the significant roles of adenosine triphosphate (ATP) in diverse biological processes, ATP ...