Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applications were obtained by surface decoration with 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)] (mPEG-DSPE) and stearoyl-poly(ethylene glycol)-poly(methacryloyl sulfadimethoxine) copolymer (stearoyl-PEG-polySDM). The pH-sensitive stearoyl-PEG-polySDM copolymer contained an average of seven methacryloyl sulfadimethoxines per molecule and was found to possess an apparent pKa of 7.2. Preliminary cloud point studies showed that the hydrophilic/hydrophobic copolymer conversion occurred at pH 7.0. The copolymer was soluble above pH 7.0 and underwent aggregation at lower pH. Liposome formulations were prepared with 0.2:...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...
In the latest years, investigations have been performed to develop smart stimuli responsive drug del...
A new acid sensitive nanocarrier based on lipid core micelles has been investigated for tumor target...
Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applicati...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
A novel pH-sensitive PEGylated liposome formulation for tumor targeting was investigated. The pH-sen...
Stealth pH-responsive liposomes for the delivery of therapeutic proteins to the bladder epithelium w...
The tumour tissue displays peculiar features, namely altered pH, temperature, redox potential and en...
In this study we describe novel pH-sensitive PEGylated liposomes for site directed tumor targeting. ...
A new acid-sensitive drug-delivery nanocarrier has been developed for tumour targeting. The self-ass...
An innovative pH-switchable colloidal system that can be exploited for site-selective anticancer dru...
An innovative pH-switchable colloidal system that can be exploited for site-selective anticancer dru...
The current study aimed to develop pH-responsive cisplatin-loaded liposomes (CDDP@PLs) via the thin ...
AbstractpH-sensitive liposomes are designed to undergo acid-triggered destabilization. First generat...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...
In the latest years, investigations have been performed to develop smart stimuli responsive drug del...
A new acid sensitive nanocarrier based on lipid core micelles has been investigated for tumor target...
Novel, acid-sensitive liposomes that respond to physiopathological pH for tumour targeting applicati...
The tumour tissue displays peculiar physiopathological features that can be exploited to yield site ...
A novel pH-sensitive PEGylated liposome formulation for tumor targeting was investigated. The pH-sen...
Stealth pH-responsive liposomes for the delivery of therapeutic proteins to the bladder epithelium w...
The tumour tissue displays peculiar features, namely altered pH, temperature, redox potential and en...
In this study we describe novel pH-sensitive PEGylated liposomes for site directed tumor targeting. ...
A new acid-sensitive drug-delivery nanocarrier has been developed for tumour targeting. The self-ass...
An innovative pH-switchable colloidal system that can be exploited for site-selective anticancer dru...
An innovative pH-switchable colloidal system that can be exploited for site-selective anticancer dru...
The current study aimed to develop pH-responsive cisplatin-loaded liposomes (CDDP@PLs) via the thin ...
AbstractpH-sensitive liposomes are designed to undergo acid-triggered destabilization. First generat...
To explore a potential of pH-sensitive polymer-liposome complexes for the tumor-specific combinatori...
pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simul...
In the latest years, investigations have been performed to develop smart stimuli responsive drug del...
A new acid sensitive nanocarrier based on lipid core micelles has been investigated for tumor target...