We report polymer capsule-based probes for quantifying the pressure exerted by cells during capsule internalisation (Pin). Poly(methacrylic acid) (PMA) capsules with tuneable mechanical properties were fabricated through layer-by-layer assembly. The Pin was quantified by correlating the cell-induced deformation with the ex situ osmotically induced deformation of the polymer capsules. Ultimately, we found that human monocyte-derived macrophage THP-1 cells exerted up to approximately 360 kPa on the capsules during internalisation
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
Microcapsules of customized shapes offer significant advantages over spherical ones, including enhan...
Particles with tailored geometries have received significant attention due to their specific interac...
We report polymer capsule-based probes for quantifying the pressure exerted by cells during capsule ...
Understanding the behaviour of therapeutic carriers is important in elucidating their mechanism of a...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
A new class of polymer capsules with an in-built endocytic pH-coupled fluorescence switch is reporte...
Direction-specific release induced through osmotic pressure inside giant microcapsules is realized a...
The cell cytosol and the different subcellular organelles house the most important biochemical proce...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
We report on naturally inspired hydrogel capsules with pH-induced transitions from discoids to oblat...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Polyelectrolyte multilayer (PEM) capsules are carrier vehicles with great potential for biomedical a...
Particle–cell interactions are governed by, among other factors, the composition and surface propert...
Material properties play a key role in the cellular internalization of polymeric particles. In the p...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
Microcapsules of customized shapes offer significant advantages over spherical ones, including enhan...
Particles with tailored geometries have received significant attention due to their specific interac...
We report polymer capsule-based probes for quantifying the pressure exerted by cells during capsule ...
Understanding the behaviour of therapeutic carriers is important in elucidating their mechanism of a...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
A new class of polymer capsules with an in-built endocytic pH-coupled fluorescence switch is reporte...
Direction-specific release induced through osmotic pressure inside giant microcapsules is realized a...
The cell cytosol and the different subcellular organelles house the most important biochemical proce...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
We report on naturally inspired hydrogel capsules with pH-induced transitions from discoids to oblat...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Polyelectrolyte multilayer (PEM) capsules are carrier vehicles with great potential for biomedical a...
Particle–cell interactions are governed by, among other factors, the composition and surface propert...
Material properties play a key role in the cellular internalization of polymeric particles. In the p...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
Microcapsules of customized shapes offer significant advantages over spherical ones, including enhan...
Particles with tailored geometries have received significant attention due to their specific interac...