The mechanical properties of submicron particles offer a unique design space for advanced drug-delivery particle engineering. However, the recognition of this potential is limited by a poor consensus about both the specificity and sensitivity of mechanosensitive endocytosis over a broad particle stiffness range. In this report, our model series of polystyrene-co-poly(N-isopropylacrylamide) (pS-co-NIPAM) microgels have been prepared with a nominally constant monomer composition (50 mol % styrene and 50 mol % NIPAM) with varied bis-acrylamide cross-linking densities to introduce a tuned spectrum of particle mechanics without significant variation in particle size and surface charge. While previous mechanosensitive studies use particles with ...
The ability of cells to sense external mechanical cues is essential for their adaptation to the surr...
To investigate the cellular internalization pathways of shape- and size-specific particles as a func...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Cells continuously exert forces on their environment and respond to changes in mechanical forces by ...
Nanoparticles are well established vectors for the delivery of a wide range of biomedically relevant...
It is possible to create sophisticated and target specific devices for nanomedicine thanks to techno...
The effect of nanoparticle size, shape, and surface properties on cellular uptake has been extensive...
Uptake and intracellular trafficking of hydrogel nanoparticles (NPs) of N,N-diethyl acrylamide and 2...
A broad range of investigation methods and frameworks are currently used to throughly study the elas...
The effect of nanoparticle size, shape, and surface properties on cellular uptake has been extensive...
International audienceNanoparticles and among them nanoplastics are generally considered to induce m...
Deformability of micro/nanometer sized particles plays an important role in particle-cell interactio...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
Particle stiffness is a design parameter that affects bionano interactions, including biodistributio...
The mechanical properties of the cell membrane and the actin cortex determine a variety of cellular ...
The ability of cells to sense external mechanical cues is essential for their adaptation to the surr...
To investigate the cellular internalization pathways of shape- and size-specific particles as a func...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Cells continuously exert forces on their environment and respond to changes in mechanical forces by ...
Nanoparticles are well established vectors for the delivery of a wide range of biomedically relevant...
It is possible to create sophisticated and target specific devices for nanomedicine thanks to techno...
The effect of nanoparticle size, shape, and surface properties on cellular uptake has been extensive...
Uptake and intracellular trafficking of hydrogel nanoparticles (NPs) of N,N-diethyl acrylamide and 2...
A broad range of investigation methods and frameworks are currently used to throughly study the elas...
The effect of nanoparticle size, shape, and surface properties on cellular uptake has been extensive...
International audienceNanoparticles and among them nanoplastics are generally considered to induce m...
Deformability of micro/nanometer sized particles plays an important role in particle-cell interactio...
Particle stiffness is emerging as an important parameter in determining the cell uptake dynamics of ...
Particle stiffness is a design parameter that affects bionano interactions, including biodistributio...
The mechanical properties of the cell membrane and the actin cortex determine a variety of cellular ...
The ability of cells to sense external mechanical cues is essential for their adaptation to the surr...
To investigate the cellular internalization pathways of shape- and size-specific particles as a func...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...