Diblock copolymers (mPEG-b-PDPA), which were designed to possess pH-sensitivity as well as amphipathy, were used as an intelligent lock in the liposomal membrane. The so-called pH-sensitive liposomes were prepared by simple mixing of the synthesized mPEG-b-PDPA with phospholipids and cholesterol. Fluorescence polarization at pH 7.4 showed that the membrane stability of the hybrid liposome was significantly increased compared with the pure liposome. Therefore, in the neutral environment, the leakage of doxorubicin (DOX) was inhibited. However, when pH decreased to 6.0, DOX release rate increased by 60% due to the escape of copolymer. The effects of the membrane composition and the PDPA segment length on bilayer membrane functions were invest...
Ampholytic polymers comprised of 2-(diethylamino)ethyl methacrylate (DEAEMA) and acrylic acid (AA) i...
By synergizing molecular dynamics and dissipative particle dynamics simulations, we investigate the ...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
To improve the controllability of drug release from liposome, a series of pH- and photosensitive blo...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
A series of diblock copolymers containing an endosomal-releasing segment composed of diethylaminoeth...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
International audienceBlending amphiphilic copolymers and lipids constitutes a novel approach to com...
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...
Ampholytic polymers comprised of 2-(diethylamino)ethyl methacrylate (DEAEMA) and acrylic acid (AA) i...
By synergizing molecular dynamics and dissipative particle dynamics simulations, we investigate the ...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
To improve the controllability of drug release from liposome, a series of pH- and photosensitive blo...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
A series of diblock copolymers containing an endosomal-releasing segment composed of diethylaminoeth...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
International audienceBlending amphiphilic copolymers and lipids constitutes a novel approach to com...
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...
Ampholytic polymers comprised of 2-(diethylamino)ethyl methacrylate (DEAEMA) and acrylic acid (AA) i...
By synergizing molecular dynamics and dissipative particle dynamics simulations, we investigate the ...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...