AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes marked temperature- and pH-dependent water solubility changes. The N-isopropylacrylamide-methacrylic acid copolymer was prepared with or without octadecyl acrylate. At pH below the phase transition of the polymer, egg phosphatidylcholine liposomes quickly released a part of their contents only when associated with the octadecyl aliphatic chain grafted polymer at 37°C. Similarly, sterically stabilized liposomes also quickly released a significant part of the entrapped fluorescent markers at pH 5.5–4.9, values corresponding to those of endosomes/lysosomes. This new pH-sensitive liposome-polymer system may further improve the efficiency of liposomal...
The development of new polymer-liposome complexes (PLCs) as delivery systems is the key issue of thi...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
Diblock copolymers (mPEG-b-PDPA), which were designed to possess pH-sensitivity as well as amphipath...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
Polymer-liposome complexes (PLCs) can be efficiently applied for the treatment and/or diagnosis of s...
A novel polymer-modified thermosensitive liposome (pTSL) was developed for the delivery of Doxorubic...
Ampholytic polymers comprised of 2-(diethylamino)ethyl methacrylate (DEAEMA) and acrylic acid (AA) i...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
The development of new polymer-liposome complexes (PLCs) as delivery systems is the key issue of thi...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
Diblock copolymers (mPEG-b-PDPA), which were designed to possess pH-sensitivity as well as amphipath...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
Polymer-liposome complexes (PLCs) can be efficiently applied for the treatment and/or diagnosis of s...
A novel polymer-modified thermosensitive liposome (pTSL) was developed for the delivery of Doxorubic...
Ampholytic polymers comprised of 2-(diethylamino)ethyl methacrylate (DEAEMA) and acrylic acid (AA) i...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
The development of new polymer-liposome complexes (PLCs) as delivery systems is the key issue of thi...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...