We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxidant, tannic acid (TA), using flash nanoprecipitation, a polymer directed self-assembly method. Formation of insoluble coordination complexes of tannic acid and iron during mixing drives nanoparticle assembly. Tuning the core material to polymer ratio, the size of the nanoparticles can be readily tuned between 50 and 265 nm. The resulting nanoparticle is pH-responsive, i.e., stable at pH 7.4 and soluble under acidic conditions due to the nature of the coordination complex. Further, the coordination complex can be coprecipitated with other hydrophobic materials such as therapeutics or imaging agents. For example, coprecipitation with a hydropho...
The growing necessity to maximize the activity of therapeutics while minimizing their side effects i...
Self-assembled nanoparticles have reached a growing interest for the improvement ofcancer diseases a...
A novel kind of biocompatible pH- and temperature-responsive magnetic nanoparticle consisting of iro...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Accumulation of reactive oxygen species in cells leads to oxidative stress, with consequent damage f...
Facile synthesis of metal@polymer nanocomposites were achieved using self‐assembled tannic acid (TA)...
Chitosan-based nanoparticles are promising materials for potential biomedical applications. We used ...
Plant polyphenol-based coordination polymers (CPs) with ultra-small particle size and tailorable com...
Nanoprecipitation is a straightforward yet powerful technique to synthesize polymer nanoparticles lo...
The synthesis of well-defined functional nanoparticles for the encapsulation of hydrophobic and hydr...
Self-assembly is a powerful tool to organize the elementary molecular units into functional nanostru...
Nanoprecipitation is applied for the first time as a general concept for manufacturing nanoparticles...
pH-responsive polymers are both a fascinating and fundamentally important class of polymer. The abil...
Stimuli-responsive nanoparticles have the potential to improve the delivery of therapeutics to a spe...
The growing necessity to maximize the activity of therapeutics while minimizing their side effects i...
Self-assembled nanoparticles have reached a growing interest for the improvement ofcancer diseases a...
A novel kind of biocompatible pH- and temperature-responsive magnetic nanoparticle consisting of iro...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Accumulation of reactive oxygen species in cells leads to oxidative stress, with consequent damage f...
Facile synthesis of metal@polymer nanocomposites were achieved using self‐assembled tannic acid (TA)...
Chitosan-based nanoparticles are promising materials for potential biomedical applications. We used ...
Plant polyphenol-based coordination polymers (CPs) with ultra-small particle size and tailorable com...
Nanoprecipitation is a straightforward yet powerful technique to synthesize polymer nanoparticles lo...
The synthesis of well-defined functional nanoparticles for the encapsulation of hydrophobic and hydr...
Self-assembly is a powerful tool to organize the elementary molecular units into functional nanostru...
Nanoprecipitation is applied for the first time as a general concept for manufacturing nanoparticles...
pH-responsive polymers are both a fascinating and fundamentally important class of polymer. The abil...
Stimuli-responsive nanoparticles have the potential to improve the delivery of therapeutics to a spe...
The growing necessity to maximize the activity of therapeutics while minimizing their side effects i...
Self-assembled nanoparticles have reached a growing interest for the improvement ofcancer diseases a...
A novel kind of biocompatible pH- and temperature-responsive magnetic nanoparticle consisting of iro...