Understanding the behaviour of therapeutic carriers is important in elucidating their mechanism of action and how they are processed inside cells. Herein we examine the intracellular deformation of layer-by-layer assembled polymer capsules using super-resolution structured illumination microscopy (SIM). Spherical- and cylindrical-shaped capsules were studied in three different cell lines, namely HeLa (human epithelial cell line), RAW264.7 (mouse macrophage cell line) and differentiated THP-1 (human monocyte-derived macrophage cell line). We observed that the deformation of capsules was dependent on cell line, but independent of capsule shape. This suggests that the mechanical forces, which induce capsule deformation during cell uptake, vary...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
In the fields of tissue engineering and regenerative medicine, many researchers and companies alike ...
Abstract In the framework of novel medical paradigm the red blood cells (RBCs) have a great potenti...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
We report polymer capsule-based probes for quantifying the pressure exerted by cells during capsule ...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
Deformability of micro/nanometer sized particles plays an important role in particle-cell interactio...
Hollow microgels are fascinating model systems at the crossover between polymer vesicles, emulsions,...
Summary: Structural heterogeneity is a hallmark of living cells that drives local mechanical propert...
Cell-substrate interactions involve constant probing of microenvironment by cells. One of the respon...
The use of injectable hydrogel scaffolds for encapsulating stem cells has been studied as an effecti...
AbstractMicrobial capsules are important for virulence, but their architecture and physical properti...
textRecent progress in drug discovery has enabled us to target specific intracellular molecules to a...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
In the fields of tissue engineering and regenerative medicine, many researchers and companies alike ...
Abstract In the framework of novel medical paradigm the red blood cells (RBCs) have a great potenti...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
We report polymer capsule-based probes for quantifying the pressure exerted by cells during capsule ...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
© 2016 Dr. Xi ChenThe interactions between nanostructured materials and biological systems (nano-bio...
Particle shape is emerging as a key design parameter for tailoring the interactions between particle...
Deformability of micro/nanometer sized particles plays an important role in particle-cell interactio...
Hollow microgels are fascinating model systems at the crossover between polymer vesicles, emulsions,...
Summary: Structural heterogeneity is a hallmark of living cells that drives local mechanical propert...
Cell-substrate interactions involve constant probing of microenvironment by cells. One of the respon...
The use of injectable hydrogel scaffolds for encapsulating stem cells has been studied as an effecti...
AbstractMicrobial capsules are important for virulence, but their architecture and physical properti...
textRecent progress in drug discovery has enabled us to target specific intracellular molecules to a...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
In the fields of tissue engineering and regenerative medicine, many researchers and companies alike ...
Abstract In the framework of novel medical paradigm the red blood cells (RBCs) have a great potenti...