Cargo‐templated crosslinked polymer nanocapsules (CT‐CPNCs) are mainly synthesized by in situ formation of crosslinked polymer shells on the surface of particulate cargoes, such as therapeutic proteins, siRNA/miRNA, liposomes, chitosans, metal‐organic frameworks (MOFs), and inorganic nanoparticles. CT‐CPNCs exhibit many advantages in biomedical applications, including 1) easy preparation and purification procedures, 2) high structural stability to inhibit undesired leakage of cargoes, and 3) high specific surface area for surface modification (e.g., loading of therapeutic agents and conjugation of targeting ligands). Importantly, CT‐CPNCs are designed with stimuli–responsive properties to release their cargoes in response to internal or ext...
Protein are the most dynamic and diverse macromolecules in living organisms, taking part in almost e...
Postsynthetic surface functionalizations of the amphiphilic poly(allyamine)-g-poly(t-butylacrylate) ...
Surface engineering of nanocarriers allows fine-tuning of their interactions with biological organis...
Proteins play the most dynamic and diverse roles among all the biomacromolecules in living organisms...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Enzymes are catalysts bearing excellent properties (high activity, selectivity and specificity) that ...
© 2022 The Authors. Advanced Science published by Wiley-VCH GmbHCarriers are equally important as dr...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
As the most dynamic and diverse macromolecules in our body, proteins perform a vast array of functio...
Scientists are focusing immense attention on polymeric nanocarriers as a prominent delivery vehicle ...
The reasons for the growing interest in biomaterials for application in the biomedical field are rel...
Developing efficient strategies to introduce biomolecules around polymeric nanoparticles (NPs) is cr...
© 2014 Dr. Kang LiangRecent progress in material science and nanotechnology has enabled the design o...
Protein cages, including ferritins, viral capsids, and encapsulins, are biomolecule-based supramolec...
Multicompartment polymeric nanocarriers which mimic the compartmentalized architecture of living cel...
Protein are the most dynamic and diverse macromolecules in living organisms, taking part in almost e...
Postsynthetic surface functionalizations of the amphiphilic poly(allyamine)-g-poly(t-butylacrylate) ...
Surface engineering of nanocarriers allows fine-tuning of their interactions with biological organis...
Proteins play the most dynamic and diverse roles among all the biomacromolecules in living organisms...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Enzymes are catalysts bearing excellent properties (high activity, selectivity and specificity) that ...
© 2022 The Authors. Advanced Science published by Wiley-VCH GmbHCarriers are equally important as dr...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
As the most dynamic and diverse macromolecules in our body, proteins perform a vast array of functio...
Scientists are focusing immense attention on polymeric nanocarriers as a prominent delivery vehicle ...
The reasons for the growing interest in biomaterials for application in the biomedical field are rel...
Developing efficient strategies to introduce biomolecules around polymeric nanoparticles (NPs) is cr...
© 2014 Dr. Kang LiangRecent progress in material science and nanotechnology has enabled the design o...
Protein cages, including ferritins, viral capsids, and encapsulins, are biomolecule-based supramolec...
Multicompartment polymeric nanocarriers which mimic the compartmentalized architecture of living cel...
Protein are the most dynamic and diverse macromolecules in living organisms, taking part in almost e...
Postsynthetic surface functionalizations of the amphiphilic poly(allyamine)-g-poly(t-butylacrylate) ...
Surface engineering of nanocarriers allows fine-tuning of their interactions with biological organis...