The intracellular delivery of functional nanoparticles (NPs) and the release of therapeutic payloads at a target site are central issues for biomedical applications. However, the endosomal entrapment of NPs typically results in the degradation of active cargo, leading to poor therapeutic outcomes. Current advances to promote the endosomal escape of NPs largely involve the use of polycationic polymers and cell-penetrating peptides (CPPs), which both can suffer from potential toxicity and convoluted synthesis/conjugation processes. Herein, we report the use of metal-phenolic networks (MPNs) as versatile and nontoxic coatings to facilitate the escape of NPs from endo/lysosomal compartments. The MPNs, which were engineered from the polyphenol t...
Background: A major bottleneck in drug delivery is the breakdown and degradation of the delivery sys...
Endosomal escape is a bottleneck in the efficient delivery of therapeutics using nanoparticles; ther...
Despite continuous improvements in delivery systems, the development of methods for efficient and sp...
The intracellular delivery of functional nanoparticles (NPs) and the release of therapeutic payloads...
Intracellular delivery of proteins is a promising strategy for regulating cellular behavior and ther...
Most targeting strategies of anticancer drug delivery systems (DDSs) rely on the surface functionali...
The effective escape of nanocarriers from endosomal compartments of the cell remains a major hurdle ...
Polymer nanoparticles offer significant benefits for improving delivery of biological therapeutics s...
© 2016 Dr. Yi JuCapsules have emerged as a useful platform for biomedical applications due to their ...
Many emerging therapies rely on the delivery of biological cargo into the cytosol. Nanoparticle deli...
© 2018 American Chemical Society. Endosomal escape is a bottleneck in the efficient delivery of ther...
Therapeutic proteins and enzymes are a group of interesting candidates for the treatment of numerous...
Therapeutic proteins and enzymes are a group of interesting candidates for the treatment of numerous...
This study reports a novel nanoparticle system with simple and modular one-step assembly, which can ...
© 2021 Shiyao LiThe rapid development of nanoparticle engineering has extended into a wide range of ...
Background: A major bottleneck in drug delivery is the breakdown and degradation of the delivery sys...
Endosomal escape is a bottleneck in the efficient delivery of therapeutics using nanoparticles; ther...
Despite continuous improvements in delivery systems, the development of methods for efficient and sp...
The intracellular delivery of functional nanoparticles (NPs) and the release of therapeutic payloads...
Intracellular delivery of proteins is a promising strategy for regulating cellular behavior and ther...
Most targeting strategies of anticancer drug delivery systems (DDSs) rely on the surface functionali...
The effective escape of nanocarriers from endosomal compartments of the cell remains a major hurdle ...
Polymer nanoparticles offer significant benefits for improving delivery of biological therapeutics s...
© 2016 Dr. Yi JuCapsules have emerged as a useful platform for biomedical applications due to their ...
Many emerging therapies rely on the delivery of biological cargo into the cytosol. Nanoparticle deli...
© 2018 American Chemical Society. Endosomal escape is a bottleneck in the efficient delivery of ther...
Therapeutic proteins and enzymes are a group of interesting candidates for the treatment of numerous...
Therapeutic proteins and enzymes are a group of interesting candidates for the treatment of numerous...
This study reports a novel nanoparticle system with simple and modular one-step assembly, which can ...
© 2021 Shiyao LiThe rapid development of nanoparticle engineering has extended into a wide range of ...
Background: A major bottleneck in drug delivery is the breakdown and degradation of the delivery sys...
Endosomal escape is a bottleneck in the efficient delivery of therapeutics using nanoparticles; ther...
Despite continuous improvements in delivery systems, the development of methods for efficient and sp...