Nanolipid vesicular structures are ideal candidates for the controlled release of various ingredients, from vitamins for nutraceutical purposes to chemoterapic drugs. To improve their stability, permeability, and some specific surface properties, such as mucoadhesiveness, these structures can require a process of surface engineering. The interaction of lipid vesicles with oppositely charged polyelectrolytes seems to be an interesting solution, especially when the negatively charged liposomes are complexed with the cationic chitosan. In this work, a novel simil-microfluidic technique was used to produce both chitosan-coated vesicles and a vegan alternative composed of cholesterol-free liposomes coated by Guar Hydroxypropyltrimonium Ch...
Micro- and nanoparticles are designed to deliver drugs and contrast agents to their target site in a...
Microfluidics is an emerging technology that can be employed as a powerful tool for designing lipid ...
The addition of polyethylene glycol (PEG) on the surface of liposomes increases their circulation ti...
Nanolipid vesicular structures are ideal candidates for the controlled release of various ingredien...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. De...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. No...
Micronutrients administration by fortification of staple and complementary foods is a followed strat...
grantor: University of TorontoThe present study demonstrates the feasibility of a new self...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
The transport of hydrophobic drugs in the human body exhibits complications due to the low solubilit...
Novel nanotechnologies represent the most attractive and innovative tools to date exploited by cosm...
Micro- and nanoparticles are designed to deliver drugs and contrast agents to their target site in a...
Microfluidics is an emerging technology that can be employed as a powerful tool for designing lipid ...
The addition of polyethylene glycol (PEG) on the surface of liposomes increases their circulation ti...
Nanolipid vesicular structures are ideal candidates for the controlled release of various ingredien...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. De...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. No...
Micronutrients administration by fortification of staple and complementary foods is a followed strat...
grantor: University of TorontoThe present study demonstrates the feasibility of a new self...
International audienceBeing the base element of cell membranes, lipid bilayers are an essential ingr...
The transport of hydrophobic drugs in the human body exhibits complications due to the low solubilit...
Novel nanotechnologies represent the most attractive and innovative tools to date exploited by cosm...
Micro- and nanoparticles are designed to deliver drugs and contrast agents to their target site in a...
Microfluidics is an emerging technology that can be employed as a powerful tool for designing lipid ...
The addition of polyethylene glycol (PEG) on the surface of liposomes increases their circulation ti...