We report the development of the multiplexed nanoflare, a nanoparticle agent that is capable of simultaneously detecting two distinct mRNA targets inside a living cell. These probes are spherical nucleic acid (SNA) gold nanoparticle (Au NP) conjugates consisting of densely packed and highly oriented oligonucleotide sequences, many of which are hybridized to a reporter with a distinct fluorophore label and each complementary to its corresponding mRNA target. When multiplexed nanoflares are exposed to their targets, they provide a sequence specific signal in both extra- and intracellular environments. Importantly, one of the targets can be used as an internal control, improving detection by accounting for cell-to-cell variations in nanopartic...
The design of nanoparticulate systems which can perform multiple synergistic functions in cells with...
Recently DNA-coated gold nanoparticles have emerged as ideal tools for the detection of mRNA in cell...
As an investigative tool, live-cell imaging requires superior probe design to guarantee imaging qual...
Gold nanoparticles (AuNPs) have shown great promise as a universal platform for biosensing and are o...
Simultaneous detection and imaging of multiple intracellular biomarkers hold great promise for early...
Nanoflares are intracellular probes consisting of oligonucleotides immobilized on various nanopartic...
A new class of intracellular nanoprobe, termed fluorescence resonance energy transfer (FRET) nanofla...
The design of nanoparticulate systems which can perform multiple synergistic functions in cells with...
Complex, multilayered nanoparticles hold great promise for more sophisticated drug/gene delivery sys...
In this paper we present our recent studies on creating a nano-probe for the detection of all mRNA s...
Summary Nanosensing by oligonucleotide optical switches coupled to nanoparticles is a highly promis...
Despite the widespread utilization of gold nanoparticles and graphene for in vivo applications, comp...
AbstractThe design, implementation and characterization of complex nanostructures for intracellular ...
<p>From the 1950s onwards, our understanding of the formation and intracellular trafficking of...
In the past decade gold nanoparticle-nucleic acid conjugates became progressivelyimportant for biome...
The design of nanoparticulate systems which can perform multiple synergistic functions in cells with...
Recently DNA-coated gold nanoparticles have emerged as ideal tools for the detection of mRNA in cell...
As an investigative tool, live-cell imaging requires superior probe design to guarantee imaging qual...
Gold nanoparticles (AuNPs) have shown great promise as a universal platform for biosensing and are o...
Simultaneous detection and imaging of multiple intracellular biomarkers hold great promise for early...
Nanoflares are intracellular probes consisting of oligonucleotides immobilized on various nanopartic...
A new class of intracellular nanoprobe, termed fluorescence resonance energy transfer (FRET) nanofla...
The design of nanoparticulate systems which can perform multiple synergistic functions in cells with...
Complex, multilayered nanoparticles hold great promise for more sophisticated drug/gene delivery sys...
In this paper we present our recent studies on creating a nano-probe for the detection of all mRNA s...
Summary Nanosensing by oligonucleotide optical switches coupled to nanoparticles is a highly promis...
Despite the widespread utilization of gold nanoparticles and graphene for in vivo applications, comp...
AbstractThe design, implementation and characterization of complex nanostructures for intracellular ...
<p>From the 1950s onwards, our understanding of the formation and intracellular trafficking of...
In the past decade gold nanoparticle-nucleic acid conjugates became progressivelyimportant for biome...
The design of nanoparticulate systems which can perform multiple synergistic functions in cells with...
Recently DNA-coated gold nanoparticles have emerged as ideal tools for the detection of mRNA in cell...
As an investigative tool, live-cell imaging requires superior probe design to guarantee imaging qual...