We herein describe an Atomic Force Microscopy (AFM)-based experimental procedure which allows the simultaneous mechanical and morphological characterization of several hundred individual nanosized vesicles within the hour timescale. When deposited on a flat rigid surface from aqueous solution, vesicles are deformed by adhesion forces into oblate spheroids whose geometry is a direct consequence of their mechanical stiffness. AFM image analysis can be used to quantitatively measure the contact angle of individual vesicles, which is a size-independent descriptor of their deformation and, consequently, of their stiffness. The same geometrical measurements can be used to infer vesicle diameter in its original, spherical shape. We demonstrate the...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Extracellular vesicles (EVs) are a class of lipid bilayer enclosed particles secreted by most mammal...
We herein describe an Atomic Force Microscopy (AFM)-based experimental procedure which allows the si...
The mechanical properties of extracellular vesicles (EVs) are known to influence their biological fu...
Both natural as well as artificial vesicles are of tremendous interest in biology and nanomedicine. ...
Small multilamellar vesicles may have benefits over unilamellar vesicles for drug delivery, such as ...
Extracellular vesicles (EVs) are small vesicles ensuring transport of molecules between cells and th...
Extracellular vesicles (EV) are small biological entities released from cells into body fluids. EV a...
Sonicated small unilamellar egg yolk phosphatidylcholine (EggPC) vesicles were investigated using at...
Abstract Extracellular vesicles (EVs) are a unique, heterogeneous class of biological nanoparticles ...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
Abstract The nanomechanical properties of tumor‐derived small extracellular vesicles (sEVs) are esse...
In this manuscript a novel optical assay, based on citrated gold nanoparticles, for estimating the s...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Extracellular vesicles (EVs) are a class of lipid bilayer enclosed particles secreted by most mammal...
We herein describe an Atomic Force Microscopy (AFM)-based experimental procedure which allows the si...
The mechanical properties of extracellular vesicles (EVs) are known to influence their biological fu...
Both natural as well as artificial vesicles are of tremendous interest in biology and nanomedicine. ...
Small multilamellar vesicles may have benefits over unilamellar vesicles for drug delivery, such as ...
Extracellular vesicles (EVs) are small vesicles ensuring transport of molecules between cells and th...
Extracellular vesicles (EV) are small biological entities released from cells into body fluids. EV a...
Sonicated small unilamellar egg yolk phosphatidylcholine (EggPC) vesicles were investigated using at...
Abstract Extracellular vesicles (EVs) are a unique, heterogeneous class of biological nanoparticles ...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
Abstract The nanomechanical properties of tumor‐derived small extracellular vesicles (sEVs) are esse...
In this manuscript a novel optical assay, based on citrated gold nanoparticles, for estimating the s...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Proteinaceous assemblies are ubiquitous in nature. One important form of these assemblies are protei...
Extracellular vesicles (EVs) are a class of lipid bilayer enclosed particles secreted by most mammal...