Extracellular vesicles (EVs)-mediated communication relies not only on the delivery of complex molecular cargoes as lipids, proteins, genetic material, and metabolites to their target cells but also on the modification of the cell surface local properties induced by the eventual fusion of EVs’ membranes with the cells’ plasma membrane. Here we applied scanning calorimetry to study the phase transition of single phospholipid (DMPC) monolamellar vesicles, investigating the thermodynamical effects caused by the fusion of doping amounts of mesenchymal stem cells-derived EVs. Specifically, we studied EVs-induced consequences on the lipids distributed in the differently curved membrane leaflets, having different density and order. The effect of E...
Cell and vesicle adhesion is believed to be dictated by the balance between a local interaction pote...
AbstractWe reported previously the effects of both osmotic and curvature stress on fusion between po...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Extracellular vesicles (EVs) are a main intercellular communication system. To deepen their cell int...
Membrane fusion is an important phenomenon in cell biology and pathology. This phenomenon can be mod...
Lateral phase heterogeneity in biomembranes can govern cellular functions and may serve as a platfor...
The relationship between lipid phase separation and fusion of small unilamellar phosphatidylserine-c...
We have investigated the temperature dependence of the fusion of phospholipid vesicles composed of p...
Lipid-based nanoparticles, also called vesicles or liposomes, can be used as carriers for drugs or m...
AbstractNano-differential scanning calorimetry (nano-DSC) is a powerful tool in the investigation of...
AbstractDifferential scanning calorimetry (DSC) and pressure perturbation calorimetry (PPC) were use...
Lipid-based nanoparticles, also called vesicles or liposomes, can be used as carriers for drugs or m...
Nano-differential scanning calorimetry (nano-DSC) is a powerful tool in the investigation of unilame...
The influence of cholesterol on divalent cation-induced fusion and isothermal phase transitions of l...
Cell and vesicle adhesion is believed to be dictated by the balance between a local interaction pote...
AbstractWe reported previously the effects of both osmotic and curvature stress on fusion between po...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...
Extracellular vesicles (EVs) are a main intercellular communication system. To deepen their cell int...
Membrane fusion is an important phenomenon in cell biology and pathology. This phenomenon can be mod...
Lateral phase heterogeneity in biomembranes can govern cellular functions and may serve as a platfor...
The relationship between lipid phase separation and fusion of small unilamellar phosphatidylserine-c...
We have investigated the temperature dependence of the fusion of phospholipid vesicles composed of p...
Lipid-based nanoparticles, also called vesicles or liposomes, can be used as carriers for drugs or m...
AbstractNano-differential scanning calorimetry (nano-DSC) is a powerful tool in the investigation of...
AbstractDifferential scanning calorimetry (DSC) and pressure perturbation calorimetry (PPC) were use...
Lipid-based nanoparticles, also called vesicles or liposomes, can be used as carriers for drugs or m...
Nano-differential scanning calorimetry (nano-DSC) is a powerful tool in the investigation of unilame...
The influence of cholesterol on divalent cation-induced fusion and isothermal phase transitions of l...
Cell and vesicle adhesion is believed to be dictated by the balance between a local interaction pote...
AbstractWe reported previously the effects of both osmotic and curvature stress on fusion between po...
Membrane fusion is essential for nerve-cell communication, for protein transport between cell organe...