pH-responsive polymersomes have emerged as promising nanocarriers for antitumor drugs to realize their fast release and action in a weakly acidic microenvironment of tumor cells. Herein, however, we designed a remarkably pH-responsive polymersome self-assembled from amphiphilic benzimidazole-based polyphosphazenes via the incorporation of cholesteryl hemisuccinate (CholHS), a type of cholesteric molecule, into the polymersome bilayers to inhibit the drug release during blood circulation. Actually, unwanted premature drug leakage before arriving at the acidic tumor site has become a serious problem for polymersomes encapsulating water-soluble drugs, especially when the drug loading is at a high level, thus limiting the therapeutic efficacy. ...
The aim of this study was the design and evaluation of a novel plasma stable, pH-sensitive niosomal ...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...
For controlled drug delivery applications, an ideal carrier system should release its drug payload o...
Polymeric nanoparticles from amphiphilic copolymers are deemed as flexible platforms for effective d...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
A family of novel ‘smart’ drug nanovectors based on 2-(methacryloyloxy)ethyl-3-chloro-4-hydroxybenzo...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Rapid cellular uptake and efficient drug release in tumor cells are two of the major challenges for ...
Artificial nanostructures using polymers to produce polymeric vesicles are inspired by the many intr...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
The use of nano-sized synthetic polymers, comprised of therapeutic entities like drugs, genes or pep...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
Cholesterol has been used as an effective component of therapeutic delivery systems because of its a...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
Anastasia Yu Lokova, Olga V Zaborova Department of Chemistry, M.V. Lomonosov Moscow State Universit...
The aim of this study was the design and evaluation of a novel plasma stable, pH-sensitive niosomal ...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...
For controlled drug delivery applications, an ideal carrier system should release its drug payload o...
Polymeric nanoparticles from amphiphilic copolymers are deemed as flexible platforms for effective d...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
A family of novel ‘smart’ drug nanovectors based on 2-(methacryloyloxy)ethyl-3-chloro-4-hydroxybenzo...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Rapid cellular uptake and efficient drug release in tumor cells are two of the major challenges for ...
Artificial nanostructures using polymers to produce polymeric vesicles are inspired by the many intr...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
The use of nano-sized synthetic polymers, comprised of therapeutic entities like drugs, genes or pep...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
Cholesterol has been used as an effective component of therapeutic delivery systems because of its a...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
Anastasia Yu Lokova, Olga V Zaborova Department of Chemistry, M.V. Lomonosov Moscow State Universit...
The aim of this study was the design and evaluation of a novel plasma stable, pH-sensitive niosomal ...
The development of an intelligent biomaterial system that can efficiently accumulate at the tumor si...
For controlled drug delivery applications, an ideal carrier system should release its drug payload o...