Shape and responsiveness of nanoengineered delivery carriers are crucial characteristics for rapid and efficient delivery of therapeutics. We report on a novel type of micrometer-sized hydrogel particles of controlled shape with dual pH- and redox-sensitivity for intracellular delivery of anticancer drugs. The cubical and spherical poly(methacrylic acid) (PMAA) networks with disulfide links are obtained by cross-linking PMAA with cystamine within hydrogen-bonded multilayers of PMAA/poly(vinylpyrrolidone) (PMAA/PVPON) on sacrificial mesoporous templates. The pH-triggered hydrogel swelling/shrinkage not only affords effective doxorubicin entrapment but also efficient endosomal/lysosomal escape, and redox-triggered degradation provides drug ...
The pH and reduction dual-responsive polypeptide nanogels with self-reinforced endocytoses were prep...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
Mesoporous silica nanoparticles (MSN)-polymer hybrid combined with the aliphatic biodegradable polye...
Long circulation in the blood, efficient cellular internalization, and intracellular drug release in...
The application of nanomaterials in intelligent drug delivery is developing rapidly for treatment of...
The intracellular activity and drug depot characteristics of micrometer-sized hydrogels are describe...
Reconciling the conflicting needs for a prolonged circulation time, enhanced cellular uptake by bulk...
A novel pH and reduction dual-responsive nanogel with improved cellular internalization was prepared...
Dual stimuli-responsive hollow nanogel spheres serving as an efficient intracellular drug delivery p...
We report on naturally inspired hydrogel capsules with pH-induced transitions from discoids to oblat...
Hydrogel particles encapsulating biomolecules or living cells are becoming an attractive means to me...
In this work, a novel type of pH-sensitive multifunctional envelope-type mesoporous silica nanoconta...
Self-assembled micelles of amphiphilic block copolymers (ABPs) with stimuli-responsive degradation (...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
The pH and reduction dual-responsive polypeptide nanogels with self-reinforced endocytoses were prep...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
Mesoporous silica nanoparticles (MSN)-polymer hybrid combined with the aliphatic biodegradable polye...
Long circulation in the blood, efficient cellular internalization, and intracellular drug release in...
The application of nanomaterials in intelligent drug delivery is developing rapidly for treatment of...
The intracellular activity and drug depot characteristics of micrometer-sized hydrogels are describe...
Reconciling the conflicting needs for a prolonged circulation time, enhanced cellular uptake by bulk...
A novel pH and reduction dual-responsive nanogel with improved cellular internalization was prepared...
Dual stimuli-responsive hollow nanogel spheres serving as an efficient intracellular drug delivery p...
We report on naturally inspired hydrogel capsules with pH-induced transitions from discoids to oblat...
Hydrogel particles encapsulating biomolecules or living cells are becoming an attractive means to me...
In this work, a novel type of pH-sensitive multifunctional envelope-type mesoporous silica nanoconta...
Self-assembled micelles of amphiphilic block copolymers (ABPs) with stimuli-responsive degradation (...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
The pH and reduction dual-responsive polypeptide nanogels with self-reinforced endocytoses were prep...
Nanoscopic delivery vehicles capable of encapsulating drug molecules and releasing them in response ...
Mesoporous silica nanoparticles (MSN)-polymer hybrid combined with the aliphatic biodegradable polye...