AbstractpH-sensitive liposomes are designed to undergo acid-triggered destabilization. First generation pH-sensitive liposomes, based on the cone-shaped lipid dioleoylphosphatidylethanolamine (DOPE), have been shown to lose fusogenicity in the presence of serum. Here, we report the design and evaluation of novel serum-resistant pH-sensitive liposome formulations that are based on the composition of egg phosphatidylcholine (PC), cholesteryl hemisuccinate (CHEMS), oleyl alcohol (OAlc), and Tween-80 (T-80). When loaded with the fluorescent probe calcein, these liposomes exhibited excellent stability at pH 7.4 and underwent rapid destabilization upon acidification as shown by calcein dequenching and particle size increase. Adjusting the mole pe...
Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applicati...
The tumour tissue displays peculiar features, namely altered pH, temperature, redox potential and en...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
AbstractpH-sensitive liposomes are designed to undergo acid-triggered destabilization. First generat...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
AbstractpH-sensitive liposomes are designed to specifically triggered release the loaded drugs in re...
Liposomes that destabilize at mildly acidic pH are efficient tools for delivering water-soluble drug...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
AbstractWe investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytopla...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
We investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytoplasmic and...
A novel pH-sensitive PEGylated liposome formulation for tumor targeting was investigated. The pH-sen...
The current study aimed to develop pH-responsive cisplatin-loaded liposomes (CDDP@PLs) via the thin ...
The definition of liposomal preparations where sensitivity to moderate drops of pH (i.e. from 7.4 to...
Introduction: The idea of using pH-sensitive liposomes to improve intracellular delivery of anticanc...
Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applicati...
The tumour tissue displays peculiar features, namely altered pH, temperature, redox potential and en...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...
AbstractpH-sensitive liposomes are designed to undergo acid-triggered destabilization. First generat...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
AbstractpH-sensitive liposomes are designed to specifically triggered release the loaded drugs in re...
Liposomes that destabilize at mildly acidic pH are efficient tools for delivering water-soluble drug...
Purpose. To characterize the ability of a novel pH-sensitive lipid to trigger the release of PEG-gra...
AbstractWe investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytopla...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
We investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytoplasmic and...
A novel pH-sensitive PEGylated liposome formulation for tumor targeting was investigated. The pH-sen...
The current study aimed to develop pH-responsive cisplatin-loaded liposomes (CDDP@PLs) via the thin ...
The definition of liposomal preparations where sensitivity to moderate drops of pH (i.e. from 7.4 to...
Introduction: The idea of using pH-sensitive liposomes to improve intracellular delivery of anticanc...
Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applicati...
The tumour tissue displays peculiar features, namely altered pH, temperature, redox potential and en...
Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic confo...