The development of nucleic acid therapeutics has been hampered by issues associated with their stability and <i>in vivo</i> delivery. To address these challenges, we describe a new strategy to engineer DNA structures with strong binding affinity to human serum albumin (HSA). HSA is the most abundant protein in the blood and has a long circulation half-life (19 days). It has been shown to hinder phagocytosis, is retained in tumors, and aids in cellular penetration. Indeed, HSA has already been successfully used for the delivery of small-molecule drugs and nanoparticles. We show that conjugating dendritic alkyl chains to DNA creates amphiphiles that exhibit high-affinity (<i>K</i>d in low nanomolar range) binding to HSA. Notably, complexation...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...
Nucleic acids represent very appealing building blocks for the construction of nano-scaled objects w...
We review the current developments of DNA-based nanostructures for drug delivery, immunotherapy, dia...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
<p> In addition to being the natural genetic information carrier, DNA can also serve as a versatile ...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
Nucleic acid-based drugs exhibited great potential in cancer therapeutics. However, the biological i...
Nucleic acids are very important biomolecules in charge of the transmission of the genetic inheritan...
DNA nanostructures are powerful tools for synthetic biology with great promise as drug delivery devi...
abstract: DNA nanotechnology is ideally suited for numerous applications from the crystallization an...
The development of nonviral gene delivery systems is a great challenge to enable safe gene therapy. ...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...
Nucleic acids represent very appealing building blocks for the construction of nano-scaled objects w...
We review the current developments of DNA-based nanostructures for drug delivery, immunotherapy, dia...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve as inh...
<p> In addition to being the natural genetic information carrier, DNA can also serve as a versatile ...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
1700692Fully addressable DNA nanostructures, especially DNA origami, possess huge potential to serve...
Nucleic acid-based drugs exhibited great potential in cancer therapeutics. However, the biological i...
Nucleic acids are very important biomolecules in charge of the transmission of the genetic inheritan...
DNA nanostructures are powerful tools for synthetic biology with great promise as drug delivery devi...
abstract: DNA nanotechnology is ideally suited for numerous applications from the crystallization an...
The development of nonviral gene delivery systems is a great challenge to enable safe gene therapy. ...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...
Nucleic acids represent very appealing building blocks for the construction of nano-scaled objects w...
We review the current developments of DNA-based nanostructures for drug delivery, immunotherapy, dia...