We report the development of a generalized pH-sensitive drug delivery system that can release any charged drug preferentially at the pH range of interest. Our system is based on polypyrrole nanoparticles (PPy NPs), synthesized via a simple one-step microemulsion technique. These nanoparticles are highly monodisperse, stable in solution over the period of a month, and have good drug loading capacity (∼15 wt%). We show that PPy NPs can be tuned to release drugs at both acidic and basic pH by varying the pH, the charge of the drug, as well as by adding small amounts of charged amphiphiles. Moreover, these NPs may be delivered locally by immobilizing them in a hydrogel. Our studies show encapsulation within a calcium alginate hydrogel results i...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abili...
Bioavailability of weakly basic drugs may be disrupted by dramatic pH changes or unexpected pH alter...
Intelligent and more advanced therapeutic agents, capable of sensing and responding to their environ...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abil...
Micelles are excellent devices to be used as controlled drug delivery systems since they exhibit th...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abili...
© 2017 Dr. Adelene Sue Mei WongThe use of nanoparticles for drug delivery has been a burgeoning area...
A novel pH-sensitive nanocarrier based on mesoporous silica nanoparticles with self-immolative polym...
The colloid phenomenon of soft particles is becoming an important area of research due to the growin...
In this work, pH-responsive polypeptide-based nanogels are reported as potential drug delivery syste...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
Conducting polymers such as polypyrrole (PPy) can be used as electrically responsive drug delivery s...
In this article, pH-responsive near-infrared emitting conjugated polymer nanoparticles (CPNs) are pr...
Objective(s): Pharmaceutical industries are leading to improved medications that can target diseases...
To achieve a pH-responsive switchable on-demand release of nanoparticles (NPs) from intravaginal rin...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abili...
Bioavailability of weakly basic drugs may be disrupted by dramatic pH changes or unexpected pH alter...
Intelligent and more advanced therapeutic agents, capable of sensing and responding to their environ...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abil...
Micelles are excellent devices to be used as controlled drug delivery systems since they exhibit th...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abili...
© 2017 Dr. Adelene Sue Mei WongThe use of nanoparticles for drug delivery has been a burgeoning area...
A novel pH-sensitive nanocarrier based on mesoporous silica nanoparticles with self-immolative polym...
The colloid phenomenon of soft particles is becoming an important area of research due to the growin...
In this work, pH-responsive polypeptide-based nanogels are reported as potential drug delivery syste...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
Conducting polymers such as polypyrrole (PPy) can be used as electrically responsive drug delivery s...
In this article, pH-responsive near-infrared emitting conjugated polymer nanoparticles (CPNs) are pr...
Objective(s): Pharmaceutical industries are leading to improved medications that can target diseases...
To achieve a pH-responsive switchable on-demand release of nanoparticles (NPs) from intravaginal rin...
Micelles are good devices for use as controlled drug delivery systems because they exhibit the abili...
Bioavailability of weakly basic drugs may be disrupted by dramatic pH changes or unexpected pH alter...
Intelligent and more advanced therapeutic agents, capable of sensing and responding to their environ...