PURPOSE: Layered nanoparticles have the potential to deliver any number of substances to cells both in vitro and in vivo. The purpose of this study was to develop and test a relatively simple alternative to custom synthesized nanoparticles for use in multiple biological systems, with special focus on the eye. METHODS: The biotin-labeled transcriptionally active PCR products (TAP) were conjugated to gold, semiconductor nanocrystals, and magnetic nanoparticles (MNP) coated with streptavidin. The process of nanoparticle construction was monitored with gel electrophoresis. Fluorescence microscopy followed by image analysis was used to examine gene expression levels from DNA alone and tethered MNP in human hepatoma derived Huh-7 cells. Adult ret...
The fields of biomaterials, nanobiotechnology, and gene and drug delivery have all progressed over t...
Introduction: Gene therapy continues to grow as an important area of research, primarily because of ...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
Purpose: A novel system, based on biosensor DNA tethered to a nanoparticle, was developed for the tr...
AbstractThe use of nanoparticles as carriers for the delivery of therapeutic materials to target tis...
Nanomedicine involves cell-by-cell regenerative medicine, either repairing cells one at a time or tr...
Ophthalmic gene therapy is an intellectual and intentional manipulation of desired gene expression i...
Nanomedicine involves cell-by-cell regenerative medicine, either repairing cells one at a time or tr...
The eye is an excellent candidate for gene therapy as it is immune privileged and much of the diseas...
Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to t...
Gene delivery technologies to introduce foreign genes into highly differentiated mammalian cells hav...
Many rare diseases course with affectation of neurosensory organs. Among them, the neuroepithelial r...
Many rare diseases course with affectation of neurosensory organs. Among them, the neuroepithelial r...
With the advent of powerful gene editing tools such as CRISPR/Cas9, advances in gene therapy have ga...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
The fields of biomaterials, nanobiotechnology, and gene and drug delivery have all progressed over t...
Introduction: Gene therapy continues to grow as an important area of research, primarily because of ...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
Purpose: A novel system, based on biosensor DNA tethered to a nanoparticle, was developed for the tr...
AbstractThe use of nanoparticles as carriers for the delivery of therapeutic materials to target tis...
Nanomedicine involves cell-by-cell regenerative medicine, either repairing cells one at a time or tr...
Ophthalmic gene therapy is an intellectual and intentional manipulation of desired gene expression i...
Nanomedicine involves cell-by-cell regenerative medicine, either repairing cells one at a time or tr...
The eye is an excellent candidate for gene therapy as it is immune privileged and much of the diseas...
Treatment of diseases that affect the CNS by gene therapy requires delivery of oligonucleotides to t...
Gene delivery technologies to introduce foreign genes into highly differentiated mammalian cells hav...
Many rare diseases course with affectation of neurosensory organs. Among them, the neuroepithelial r...
Many rare diseases course with affectation of neurosensory organs. Among them, the neuroepithelial r...
With the advent of powerful gene editing tools such as CRISPR/Cas9, advances in gene therapy have ga...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
The fields of biomaterials, nanobiotechnology, and gene and drug delivery have all progressed over t...
Introduction: Gene therapy continues to grow as an important area of research, primarily because of ...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...