Polyelectrolyte multilayer (PEM) capsules are carrier vehicles with great potential for biomedical applications. With the future aim of designing biocompatible, effective therapeutic delivery systems (<i>e</i>.<i>g</i>., for cancer), the pathway of internalization (uptake and fate) of PEM capsules was investigated. In particular the following experiments were performed: (i) the study of capsule co-localization with established endocytic markers, (ii) switching-off endocytotic pathways with pharmaceutical/chemical inhibitors, and (iii) characterization and quantification of capsule uptake with confocal and electron microscopy. As result, capsules co-localized with lipid rafts and with phagolysosomes, but not with other endocytic vesicles. Ch...
Therapeutic drug carriers can drive their cargo to their target cells. However, an obstacle is usual...
Recent evidence has established that extracellular vesicles (EVs), including exosomes and microvesic...
The development of nanoengineered particles, such as polymersomes, liposomes, and polymer capsules, ...
The use of synthetic polymers for the delivery of nucleic acids holds considerable promise for under...
The efficient internalization of TGF-beta inhibitor-loaded polyelectrolyte capsules and particles is...
Epithelial cell membranes as the typical biological barrier constitute the prime obstacle for the tr...
International audiencePlatelet-derived microparticles (PMP) bind and modify the phenotype of many ce...
Biopolymers have become important drug delivery systems for therapeutic molecules by enhancing their...
As the gold standard for stealth polymer materials, poly(ethylene glycol) (PEG) has been widely use...
Multilayer polyelectrolyte capsules made by layer-by-layer assembly of oppositely charged biodegrada...
Non-phagocytic eukaryotic cells can internalize particles <1 mum in size, encompassing pathogens,...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
Platelet-derived microparticles (PMP) bind and modify the phenotype of many cell types including end...
This review is devoted to pharmacological applications of principles of release from capsules to ove...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
Therapeutic drug carriers can drive their cargo to their target cells. However, an obstacle is usual...
Recent evidence has established that extracellular vesicles (EVs), including exosomes and microvesic...
The development of nanoengineered particles, such as polymersomes, liposomes, and polymer capsules, ...
The use of synthetic polymers for the delivery of nucleic acids holds considerable promise for under...
The efficient internalization of TGF-beta inhibitor-loaded polyelectrolyte capsules and particles is...
Epithelial cell membranes as the typical biological barrier constitute the prime obstacle for the tr...
International audiencePlatelet-derived microparticles (PMP) bind and modify the phenotype of many ce...
Biopolymers have become important drug delivery systems for therapeutic molecules by enhancing their...
As the gold standard for stealth polymer materials, poly(ethylene glycol) (PEG) has been widely use...
Multilayer polyelectrolyte capsules made by layer-by-layer assembly of oppositely charged biodegrada...
Non-phagocytic eukaryotic cells can internalize particles <1 mum in size, encompassing pathogens,...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
Platelet-derived microparticles (PMP) bind and modify the phenotype of many cell types including end...
This review is devoted to pharmacological applications of principles of release from capsules to ove...
Understanding the interactions between drug carriers and cells is of importance to enhance the deliv...
Therapeutic drug carriers can drive their cargo to their target cells. However, an obstacle is usual...
Recent evidence has established that extracellular vesicles (EVs), including exosomes and microvesic...
The development of nanoengineered particles, such as polymersomes, liposomes, and polymer capsules, ...