The ability to self-assemble one-dimensional DNA building blocks into two- and three-dimensional nanostructures via DNA/RNA nanotechnology has led to broad applications in bioimaging, basic biological mechanism studies, disease diagnosis, and drug delivery. However, the cellular uptake of most nucleic acid nanostructures is dependent on passive delivery or the enhanced permeability and retention effect, which may not be suitable for certain types of cancers, especially for treatment in vivo. To meet this need, we have constructed a multifunctional aptamer-based DNA nanoassembly (AptNA) for targeted cancer therapy. In particular, we first designed various Y-shaped functional DNA domains through predesigned base pair hybridization, including ...
Objectives: Here, a novel cruciform DNA nanostructure was developed for targeted delivery of doxorub...
[[abstract]]DNA can be used to nanofabricate three-dimensional (3D) polyhedra. A variety of applicat...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...
By its unique advantages over traditional medicine, nanomedicine has offered new strategies for canc...
ABSTRACT: DNA-based nanostructures have been widely used in various applications due to their struct...
The nucleolin-binding G-quadruplex AS1411 aptamer has been widely used for cancer therapy and diagno...
Aptamers are single-stranded oligonucleotides, DNA or RNA, which can bind to a myriad of targets suc...
Abstract DNA, a genetic material, has been employed in different scientific directions for various b...
Photodynamic therapy is one of the most promising and noninvasive methods for clinical treatment of ...
Tumor-targeted drug delivery with simultaneous cancer imaging is highly desirable for personalized m...
abstract: As advanced as current cancer therapeutics are, there are still challenges that need to be...
Platforms for targeted drug-delivery must simultaneously exhibit serum stability, efficient directed...
By utilizing RNA nanotechnology, we engineered both therapeutic siRNA and a receptor-binding RNA apt...
Aptamers are a class of small nucleic acid ligands that are composed of RNA or single-stranded DNA o...
Antibody drug conjugates (ADCs) have shown promise to be the mainstream chemotherapeutics for advanc...
Objectives: Here, a novel cruciform DNA nanostructure was developed for targeted delivery of doxorub...
[[abstract]]DNA can be used to nanofabricate three-dimensional (3D) polyhedra. A variety of applicat...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...
By its unique advantages over traditional medicine, nanomedicine has offered new strategies for canc...
ABSTRACT: DNA-based nanostructures have been widely used in various applications due to their struct...
The nucleolin-binding G-quadruplex AS1411 aptamer has been widely used for cancer therapy and diagno...
Aptamers are single-stranded oligonucleotides, DNA or RNA, which can bind to a myriad of targets suc...
Abstract DNA, a genetic material, has been employed in different scientific directions for various b...
Photodynamic therapy is one of the most promising and noninvasive methods for clinical treatment of ...
Tumor-targeted drug delivery with simultaneous cancer imaging is highly desirable for personalized m...
abstract: As advanced as current cancer therapeutics are, there are still challenges that need to be...
Platforms for targeted drug-delivery must simultaneously exhibit serum stability, efficient directed...
By utilizing RNA nanotechnology, we engineered both therapeutic siRNA and a receptor-binding RNA apt...
Aptamers are a class of small nucleic acid ligands that are composed of RNA or single-stranded DNA o...
Antibody drug conjugates (ADCs) have shown promise to be the mainstream chemotherapeutics for advanc...
Objectives: Here, a novel cruciform DNA nanostructure was developed for targeted delivery of doxorub...
[[abstract]]DNA can be used to nanofabricate three-dimensional (3D) polyhedra. A variety of applicat...
The rapidly emerging DNA nanotechnology began with pioneer Seeman’s hypothesis that DNA not only can...