This paper reports the facile design and synthesis of a series of lipidic organoalkoxysilanes with different numbers of triethoxysilane headgroups and hydrophobic alkyl chains linked by glycerol and pentaerythritol for the construction of cerasomes with regulated surface siloxane density and controlled release behavior. It was found that the number of triethoxysilane headgroups affected the properties of the cerasomes for encapsulation efficiency, drug loading capacity, and release behavior. For both water-soluble doxorubicin (DOX) and water-insoluble paclitaxel (PTX), the release rate from the cerasomes decreased as the number of triethoxysilane headgroups increased. The slower release rate from the cerasomes was attributed to the higher d...
Designing new drug delivery systems requires tight control of drug release kinetics. Historically, p...
Graphical abstract: Liposomes are natural vesicles generally based on phosphatidylcholine (PC). The ...
Development of liposome formulation of an amphiphilic anticancer peptide using the ANTS/DPX leakage ...
This paper reports the facile design and synthesis of a series of lipidic organoalkoxysilanes with d...
This paper reports the facile design and synthesis of a series of lipidic organoalkoxysilanes with d...
Nowadays, controlled drug delivery technology represents one of the frontier areas of modern medicin...
Efforts to improve the stability of liposomes have recently led to the development of organic-inorga...
Liposomal nanohybrid cerasomes display a remarkable ability to maintain their size and retain encaps...
Liposomes have been extensively investigated as possible carriers for diagnostic or therapeutic agen...
The potential of organic-inorganic liposomal cerasomes to store and release doxorubicin (DOX) is inv...
Liposomes can potentially serve as carrier systems for controlled delivery of drugs. The main goal o...
Liposomes featuring a lipid bilayer surrounding an aqueous core, have been utilized as carriers for ...
This study focuses on the development of a universal mathematical model for drug release kinetics fr...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
Liposomal drug delivery shows great promise for developing smart delivery materials, especially when...
Designing new drug delivery systems requires tight control of drug release kinetics. Historically, p...
Graphical abstract: Liposomes are natural vesicles generally based on phosphatidylcholine (PC). The ...
Development of liposome formulation of an amphiphilic anticancer peptide using the ANTS/DPX leakage ...
This paper reports the facile design and synthesis of a series of lipidic organoalkoxysilanes with d...
This paper reports the facile design and synthesis of a series of lipidic organoalkoxysilanes with d...
Nowadays, controlled drug delivery technology represents one of the frontier areas of modern medicin...
Efforts to improve the stability of liposomes have recently led to the development of organic-inorga...
Liposomal nanohybrid cerasomes display a remarkable ability to maintain their size and retain encaps...
Liposomes have been extensively investigated as possible carriers for diagnostic or therapeutic agen...
The potential of organic-inorganic liposomal cerasomes to store and release doxorubicin (DOX) is inv...
Liposomes can potentially serve as carrier systems for controlled delivery of drugs. The main goal o...
Liposomes featuring a lipid bilayer surrounding an aqueous core, have been utilized as carriers for ...
This study focuses on the development of a universal mathematical model for drug release kinetics fr...
The traditional anticancer drugs are distributed in vivo through systemic blood circulation with a v...
Liposomal drug delivery shows great promise for developing smart delivery materials, especially when...
Designing new drug delivery systems requires tight control of drug release kinetics. Historically, p...
Graphical abstract: Liposomes are natural vesicles generally based on phosphatidylcholine (PC). The ...
Development of liposome formulation of an amphiphilic anticancer peptide using the ANTS/DPX leakage ...