Publication

Microfluidic fabrication of vesicles with hybrid lipid/nanoparticle bilayer membranes

Esther Amstad
2019
Article
Résumé

Hybrid lipid/nanoparticle membranes are suitable model systems both to study the complex interactions between nanoparticles and biological membranes, and to demonstrate technological concepts in cellular sensing and drug delivery. Unfortunately, embedding nanoparticles into the bilayer membrane of lipid vesicles is challenging due to the poor control over the vesicle fabrication process of conventional methodologies and the fragility of the modified lipid bilayer assembly. Here, the utility of water-in-oil-in-water double emulsion drops with ultrathin oil shells as templates to form vesicles with hybrid lipid/nanoparticle membranes is reported. Moreover, upon bilayer formation, which occurs through dewetting of the oil solvent from the double emulsion drops, a phase separation is observed in the vesicle membrane, with solid-like nanoparticle-rich microdomains segregated into a continuous fluid-like nanoparticle-poor phase. This phase coexistence evidences the complex nature of the interactions between nanoparticles and lipid membranes. In this context, this microfluidic-assisted fabrication strategy may play a crucial role in thoroughly understanding such interactions given the uniform membrane properties of the resulting productions. Furthermore, the high encapsulation efficiency of both the vesicle membrane and core endows these vesicles with great potential for sensing applications and drug delivery.

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Concepts associés (19)
Membrane plasmique
La membrane plasmique, également appelée membrane cellulaire, membrane cytoplasmique, voire plasmalemme, est une membrane biologique séparant l'intérieur d'une cellule, appelé cytoplasme, de son environnement extérieur, c'est-à-dire du milieu extracellulaire. Cette membrane joue un rôle biologique fondamental en isolant la cellule de son environnement.
Membrane hémi-perméable
Semipermeable membrane is a type of biological or synthetic, polymeric membrane that will allow certain molecules or ions to pass through it by osmosis. The rate of passage depends on the pressure, concentration, and temperature of the molecules or solutes on either side, as well as the permeability of the membrane to each solute. Depending on the membrane and the solute, permeability may depend on solute size, solubility, properties, or chemistry. How the membrane is constructed to be selective in its permeability will determine the rate and the permeability.
Membrane (biologie)
thumb|350px|Fig 1. Schéma d'une cellule animale type. Organites : (1) Nucléole (2) Noyau (3) Ribosomes (4) Vésicule (5) Réticulum endoplasmique rugueux (ou granuleux) (REG) (6) Appareil de Golgi (7) Cytosquelette (8) Réticulum endoplasmique lisse (9) Mitochondries (10) Vacuole (11) Cytosol (12) Lysosome (13) Centrosome (constitué de deux centrioles) (14) Membrane plasmique La membrane, en biologie cellulaire, est un assemblage de molécules en un double feuillet séparant la cellule de son environnement et délimitant le cytoplasme cellulaire, ainsi que les organites à l'intérieur de celui-ci.
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