Macromolecular therapeutics and nano-sized drug delivery systems often require localisation to specific intracellular compartments. In particular, efficient endosomal escape, retrograde trafficking, or late endocytic/lysosomal activation are often prerequisites for pharmacological activity. The aim of this study was to define a fluorescence microscopy technique able to confirm the localisation of water-soluble polymeric carriers to late endocytic intracellular compartments. Three polymeric carriers of different molecular weight and character were studied: dextrin (Mw ~ 50,000 g/mol), a N-(2-hydroxypropyl)methacrylamide (HPMA) copolymer (Mw ~ 35,000 g/mol) and polyethylene glycol (PEG) (Mw 5000 g/mol). They were labelled with Oregon Green (O...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
Cellular processes depend on the fidelity of intracellular membrane traffic. Lipids, proteins, recep...
Macromolecular therapeutics and nano-sized drug delivery systems often require localisation to speci...
As they are often designed for lysosomotropic, endosomotropic and/or transcellular delivery, an unde...
As they are often designed for lysosomotropic, endosomotropic and/or transcellular delivery, an unde...
Cellular uptake and intracellular trafficking of polymer conjugates or polymer nanoparticles is typi...
Cellular uptake and intracellular trafficking of polymer conjugates or polymer nanoparticles is typi...
The first aim of this study was to establish a subcellular fractionation method to quantify intracel...
Biopolymers have become important drug delivery systems for therapeutic molecules by enhancing their...
The cell cytosol and the different subcellular organelles house the most important biochemical proce...
Many different polymers and architectures are now being developed as polymer therapeutics and non-vi...
Polymer therapeutics are being designed for lysosomotropic, endosomotropic and transcellular drug de...
Polymer therapeutics are being designed for lysosomotropic, endosomotropic and transcellular drug de...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
Cellular processes depend on the fidelity of intracellular membrane traffic. Lipids, proteins, recep...
Macromolecular therapeutics and nano-sized drug delivery systems often require localisation to speci...
As they are often designed for lysosomotropic, endosomotropic and/or transcellular delivery, an unde...
As they are often designed for lysosomotropic, endosomotropic and/or transcellular delivery, an unde...
Cellular uptake and intracellular trafficking of polymer conjugates or polymer nanoparticles is typi...
Cellular uptake and intracellular trafficking of polymer conjugates or polymer nanoparticles is typi...
The first aim of this study was to establish a subcellular fractionation method to quantify intracel...
Biopolymers have become important drug delivery systems for therapeutic molecules by enhancing their...
The cell cytosol and the different subcellular organelles house the most important biochemical proce...
Many different polymers and architectures are now being developed as polymer therapeutics and non-vi...
Polymer therapeutics are being designed for lysosomotropic, endosomotropic and transcellular drug de...
Polymer therapeutics are being designed for lysosomotropic, endosomotropic and transcellular drug de...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
To gain a better understanding of intracellular processing of nanomedicines, we employed quantitativ...
Cellular processes depend on the fidelity of intracellular membrane traffic. Lipids, proteins, recep...