AbstractThe use of nanoparticles as carriers for the delivery of therapeutic materials to target tissues has became popular in recent years and has demonstrated great potentials for the treatments of a wide range of diseases. In this review, we summarize the advantages of nanotechnology as a common gene delivery strategy with emphasis on ocular therapy. Particular attention is paid to the CK30-PEG compacted DNA nanoparticles that have been successfully tested in the eye, lung, and brain. These particles resulted in higher transfection efficiency and longer duration of expression than other non-viral vectors without any toxicity or other side effects. They have been safely used clinically and are efficient for a broad range of gene therapy a...
The field of DNA nanotechnology has progressed rapidly in recent years and now offers facile fabrica...
Gene therapy is a promising strategy for specific treatment of numerous gene-associated human diseas...
The massive amount of human genetic information already available has accelerated the identification...
AbstractThe use of nanoparticles as carriers for the delivery of therapeutic materials to target tis...
Ophthalmic gene therapy is an intellectual and intentional manipulation of desired gene expression i...
The eye is an excellent candidate for gene therapy as it is immune privileged and much of the diseas...
PURPOSE: Layered nanoparticles have the potential to deliver any number of substances to cells both ...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
227 págs.[EN] Over the past few years and due to biotechnology development, gene therapy has emerged...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
Gene therapy is a critical tool for the treatment of monogenic retinal diseases. However, the limite...
The clinical application of nanotechnology in medicine is promising for therapeutic, diagnostic, and...
Abstract Controlling gene expression via small interfering RNA (siRNA) has opened the ...
Ocular drug transport barriers pose a challenge for drug delivery comprising the ocular surface epit...
AbstractWe are approaching a new era of retinal pharmacotherapy where new drugs are rapidly being wo...
The field of DNA nanotechnology has progressed rapidly in recent years and now offers facile fabrica...
Gene therapy is a promising strategy for specific treatment of numerous gene-associated human diseas...
The massive amount of human genetic information already available has accelerated the identification...
AbstractThe use of nanoparticles as carriers for the delivery of therapeutic materials to target tis...
Ophthalmic gene therapy is an intellectual and intentional manipulation of desired gene expression i...
The eye is an excellent candidate for gene therapy as it is immune privileged and much of the diseas...
PURPOSE: Layered nanoparticles have the potential to deliver any number of substances to cells both ...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
227 págs.[EN] Over the past few years and due to biotechnology development, gene therapy has emerged...
Previously we have shown that compacted DNA nanoparticles can drive high levels of transgene express...
Gene therapy is a critical tool for the treatment of monogenic retinal diseases. However, the limite...
The clinical application of nanotechnology in medicine is promising for therapeutic, diagnostic, and...
Abstract Controlling gene expression via small interfering RNA (siRNA) has opened the ...
Ocular drug transport barriers pose a challenge for drug delivery comprising the ocular surface epit...
AbstractWe are approaching a new era of retinal pharmacotherapy where new drugs are rapidly being wo...
The field of DNA nanotechnology has progressed rapidly in recent years and now offers facile fabrica...
Gene therapy is a promising strategy for specific treatment of numerous gene-associated human diseas...
The massive amount of human genetic information already available has accelerated the identification...