We report a facile approach to immobilize pH-cleavable polymer-drug conjugates in mussel-inspired polydopamine (PDA) capsules for intracellular drug delivery. Our design takes advantage of the facile PDA coating to form capsules, the chemical reactivity of PDA films, and the acid-labile groups in polymer side chains for sustained pH-induced drug release. The anticancer drug doxorubicin (Dox) was conjugated to thiolated poly(methacrylic acid) (PMA<sub>SH</sub>) with a pH-cleavable hydrazone bond, and then immobilized in PDA capsules via robust thiol-catechol reactions between the polymer-drug conjugate and capsule walls. The loaded Dox showed limited release at physiological pH but significant release (over 85%) at endosomal/lysosomal pH. C...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
Stimuli-responsive drug delivery systems (DDSs) are expected to realize site-specific drug release a...
A series of poly(ethylene glycol) methyl ether acrylate-<i>block</i>-poly(l-lysine)-<i>block</i>-p...
We report a facile approach to immobilize pH-cleavable polymer-drug conjugates in mussel-inspired po...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
Background: Conventional chemotherapy agent such as doxorubicin (DOX) is of limited clinical use bec...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
We report the modular assembly of a polymer-drug conjugate into covalently stabilized, responsive, b...
It is in a great demand to design a biodegradable, tumor microenvironment-sensitive drug delivery sy...
<p>One major challenge of current surface modification of nanoparticles is the demand for chemical r...
The importance of achieving a high content of responsive groups of drug carriers is well-known for a...
In an attempt to explore the potential of dendritic systems for the development of effective antican...
The side effects of doxorubicin (DOX) extremely limit its application in the treatment of malignant ...
Novel pH-responsive flower-like micelles were developed to provide the mechanism for pH-triggered dr...
<div><h3>Background</h3><p>Conventional chemotherapy agent such as doxorubicin (DOX) is of limited c...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
Stimuli-responsive drug delivery systems (DDSs) are expected to realize site-specific drug release a...
A series of poly(ethylene glycol) methyl ether acrylate-<i>block</i>-poly(l-lysine)-<i>block</i>-p...
We report a facile approach to immobilize pH-cleavable polymer-drug conjugates in mussel-inspired po...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
Background: Conventional chemotherapy agent such as doxorubicin (DOX) is of limited clinical use bec...
Although self-assembled polymeric micelles have received significant attention as anticancer drug de...
We report the modular assembly of a polymer-drug conjugate into covalently stabilized, responsive, b...
It is in a great demand to design a biodegradable, tumor microenvironment-sensitive drug delivery sy...
<p>One major challenge of current surface modification of nanoparticles is the demand for chemical r...
The importance of achieving a high content of responsive groups of drug carriers is well-known for a...
In an attempt to explore the potential of dendritic systems for the development of effective antican...
The side effects of doxorubicin (DOX) extremely limit its application in the treatment of malignant ...
Novel pH-responsive flower-like micelles were developed to provide the mechanism for pH-triggered dr...
<div><h3>Background</h3><p>Conventional chemotherapy agent such as doxorubicin (DOX) is of limited c...
ABSTRACT − pH-sensitive cross-linked polymeric micelles were synthesized by using block ionomer comp...
Stimuli-responsive drug delivery systems (DDSs) are expected to realize site-specific drug release a...
A series of poly(ethylene glycol) methyl ether acrylate-<i>block</i>-poly(l-lysine)-<i>block</i>-p...