Target-specific DNA delivery requires vectors that combine stability in the biological milieu, receptor-mediated uptake into target cells, and intracellular activation to mediate transgene expression. This is achieved here using polymer-coated vectors based on plasmid DNA complexed with a reductively degradable polycation (RPC), designed for intercellular degradation. The RPC were prepared by oxidation of the terminal cysteinyl thiol groups of Cys(Lys)<sub>10</sub>Cys. The complexes were coated and surface-cross-linked using multivalent reactive copolymers of N-(2-hydroxypropyl)methacrylamide (PHPMA), providing a unique combination of steric and reversible lateral stabilization, known to promote extended circulation in the blood...
Due to improved safety, low cost and high packing capacity, polymeric vectors have become a promisin...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Polyelectrolyte complexes of DNA represent an important alternative to viruses in the development of...
Gene therapy for systemic diseases requires intravenous administration, but existing vectors are not...
Gene therapy for systemic diseases requires intravenous administration, but existing vectors are not...
We have developed polyelectrolyte gene delivery vectors that display good extracellular stability an...
The development of biodegradable gene delivery systems, which have the ability to effectively delive...
Gene delivery remains the greatest challenge in applying nucleic acid therapeutic for a broad range ...
In order to achieve efficient gene delivery, we have designed p\(K_a\) modulatable oligopeptides (2C...
Background: Gene delivery vectors based on poly(L‐lysine) and DNA (pLL/DNA complexes) have limited u...
Due to improved safety, low cost and high packing capacity, polymeric vectors have become a promisin...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Target-specific DNA delivery requires vectors that combine stability in the biological milieu, recep...
Polyelectrolyte complexes of DNA represent an important alternative to viruses in the development of...
Gene therapy for systemic diseases requires intravenous administration, but existing vectors are not...
Gene therapy for systemic diseases requires intravenous administration, but existing vectors are not...
We have developed polyelectrolyte gene delivery vectors that display good extracellular stability an...
The development of biodegradable gene delivery systems, which have the ability to effectively delive...
Gene delivery remains the greatest challenge in applying nucleic acid therapeutic for a broad range ...
In order to achieve efficient gene delivery, we have designed p\(K_a\) modulatable oligopeptides (2C...
Background: Gene delivery vectors based on poly(L‐lysine) and DNA (pLL/DNA complexes) have limited u...
Due to improved safety, low cost and high packing capacity, polymeric vectors have become a promisin...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...
Extracellular stability, endocytic escape, intracellular DNA release and nuclear translocation of DN...