International audienceThis article describes the first developments of a microfluidic circuit for the continuous generation of monodisperse polymersomes. The generation of these vesicles is made in a consecutive flow focusing cross-junctions structure from non miscible fluids. The device allows generating a stream of polymersomes in two steps. The breaking of a focused water flow creates first water droplets in a solution of diblock polymer and then the double emulsion is generated at the second constriction. This paper will describe microflabrication of the device and a study of the dynamics of droplets formation by high frame rate videomicroscopy. The work has been done on liposome in first steps and them with Pb-b-PEO block polymer in a ...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
International audienceWater/oil/water (w/o/w) double emulsions (DEs) are multicompartment structures...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceDiblock copolymers are known to spontaneously organize into polymer vesicles. ...
We fabricated phospholipid liposomes from double emulsion templates produced in a microfluidic 3D fl...
We report a parallelized capillary microfluidic device for enhanced production rate of monodisperse ...
We demonstrate that by using a syringe needle, plastic tubing, two glass capillaries and epoxy glue ...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
We demonstrate that microfluidic flow devices enable a rapid, continuous, well-reproducible and size...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
International audienceWater/oil/water (w/o/w) double emulsions (DEs) are multicompartment structures...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceThis article describes the first developments of a microfluidic circuit for th...
International audienceDiblock copolymers are known to spontaneously organize into polymer vesicles. ...
We fabricated phospholipid liposomes from double emulsion templates produced in a microfluidic 3D fl...
We report a parallelized capillary microfluidic device for enhanced production rate of monodisperse ...
We demonstrate that by using a syringe needle, plastic tubing, two glass capillaries and epoxy glue ...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
We demonstrate that microfluidic flow devices enable a rapid, continuous, well-reproducible and size...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...
International audienceWater/oil/water (w/o/w) double emulsions (DEs) are multicompartment structures...
In this study, we present a PDMS-based microfluidic platform for the fabrication of both liposomes a...