Thanks to its biocompatibility, versatility and programmable interactions, DNA has been proposed as a building block for functional, stimuli- responsive frameworks with applications in biosensing, tissue engineering and drug delivery. Of particular importance for in vivo applications is the possibility of making such nano-materials responsive to physiological stimuli. Here we demonstrate how combining non-canonical DNA G-quadruplex (G4) structures with amphiphilic DNA constructs yields nanos- tructures, which we termed “Quad-Stars”, capable of assembling into responsive hydrogel particles via a straightforward, enzyme-free, one-pot reaction. The embedded G4 structures allow one to trigger and control the assembly/disassembly in a reversible...
Here, we report the synthesis and characterization of size-controllable and stimuli-responsive DNA n...
Many emerging technologies require materials with well-defined 3D nanoscale architectures. Productio...
Biotemplated nanomaterials offer versatile functionality for multimodal imaging, biosensing, and dru...
Funder: Imperial College LondonThanks to its biocompatibility, versatility, and programmable interac...
A novel and versatile design of DNA-lipid conjugates is presented. The assembly of the DNA headgroup...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
Molecular recognition-driven self-assembly employing single-stranded DNA (ssDNA) as a template is a ...
Hydrogels are crosslinked hydrophilic polymers that undergo swelling in water. The gel volume is aff...
Deoxyribonucleic acid (DNA) nanotechnology is a novel field that utilizes self-assembling DNA strand...
Aside from its biological role, the DNA molecule is fascinating because of its unique self-assembly ...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
DNA nanotechnology enables the construction of sophisticated biomimetic nanomachines that are increa...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
Here, we report the synthesis and characterization of size-controllable and stimuli-responsive DNA n...
The development of artificial vesicles into responsive architectures capable of sensing the biologic...
Here, we report the synthesis and characterization of size-controllable and stimuli-responsive DNA n...
Many emerging technologies require materials with well-defined 3D nanoscale architectures. Productio...
Biotemplated nanomaterials offer versatile functionality for multimodal imaging, biosensing, and dru...
Funder: Imperial College LondonThanks to its biocompatibility, versatility, and programmable interac...
A novel and versatile design of DNA-lipid conjugates is presented. The assembly of the DNA headgroup...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
Molecular recognition-driven self-assembly employing single-stranded DNA (ssDNA) as a template is a ...
Hydrogels are crosslinked hydrophilic polymers that undergo swelling in water. The gel volume is aff...
Deoxyribonucleic acid (DNA) nanotechnology is a novel field that utilizes self-assembling DNA strand...
Aside from its biological role, the DNA molecule is fascinating because of its unique self-assembly ...
Due to considerable progress in DNA nanotechnology, DNA is gaining significant attention as a progra...
DNA nanotechnology enables the construction of sophisticated biomimetic nanomachines that are increa...
DNA-functionalized hydrogels are capable of sensing oligonucleotides, proteins, and small molecules,...
Here, we report the synthesis and characterization of size-controllable and stimuli-responsive DNA n...
The development of artificial vesicles into responsive architectures capable of sensing the biologic...
Here, we report the synthesis and characterization of size-controllable and stimuli-responsive DNA n...
Many emerging technologies require materials with well-defined 3D nanoscale architectures. Productio...
Biotemplated nanomaterials offer versatile functionality for multimodal imaging, biosensing, and dru...