To gain a better understanding of intracellular processing of nanomedicines, we employed quantitative live-cell fluorescence colocalization microscopy to study endosomal trafficking of polyplexes in retinal pigment epithelium cells. A new, dynamic colocalization algorithm was developed, based on particle tracking and trajectory correlation, allowing for spatiotemporal characterization of internalized polyplexes in comparison with endosomal compartments labeled with EGFP constructs. This revealed early trafficking of the polyplexes specifically to Rab5- and flotillin-2-positive vesicles and subsequent delivery to Rab7 and LAMP1-labeled late endolysosomes where the major fraction of the polyplexes remains entrapped for days, suggesting the fu...
The large molecular weight, poly-anionic, and labile nature of small interfering RNA (siRNA) necessi...
Multichannel microscopy is frequently used to study intermolecular interactions and spatial relation...
The long-term fate of biomedical nanoparticles after endocytosis is often only sparsely addressed in...
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...
Cationic cell-penetrating peptides spontaneously associate with negatively charged oligonucleotides ...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Despite the increased application of nanomaterials in diagnostics and therapeutics, methods to study...
Synthetic nanoparticles (NPs) are promising tools for imaging and drug delivery; however their mecha...
This study examines intra- and intercellular trafficking of mesoporous silica nanoparticles along mi...
Endosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of nucleic...
AbstractEndosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of...
Endosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of nucleic...
Nanoporous polymer particles (NPPs) prepared by mesoporous silica templating show promise as a new c...
The design of targeted nanomedicines requires intracellular space- and time-resolved data of nanopar...
The large molecular weight, poly-anionic, and labile nature of small interfering RNA (siRNA) necessi...
Multichannel microscopy is frequently used to study intermolecular interactions and spatial relation...
The long-term fate of biomedical nanoparticles after endocytosis is often only sparsely addressed in...
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...
Cationic cell-penetrating peptides spontaneously associate with negatively charged oligonucleotides ...
Nanoparticles (NPs) are used to encapsulate therapeutic cargos and deliver them specifically to the ...
Despite the increased application of nanomaterials in diagnostics and therapeutics, methods to study...
Synthetic nanoparticles (NPs) are promising tools for imaging and drug delivery; however their mecha...
This study examines intra- and intercellular trafficking of mesoporous silica nanoparticles along mi...
Endosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of nucleic...
AbstractEndosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of...
Endosomal entrapment is known to be a major bottleneck to successful cytoplasmic delivery of nucleic...
Nanoporous polymer particles (NPPs) prepared by mesoporous silica templating show promise as a new c...
The design of targeted nanomedicines requires intracellular space- and time-resolved data of nanopar...
The large molecular weight, poly-anionic, and labile nature of small interfering RNA (siRNA) necessi...
Multichannel microscopy is frequently used to study intermolecular interactions and spatial relation...
The long-term fate of biomedical nanoparticles after endocytosis is often only sparsely addressed in...