We present a novel method for the direct, centrifugally induced fabrication of small alginate beads displaying adjustable diameters between 180 mum and 800 mum by polymer-tube micronozzles. The size distribution features a CV of 7 - 16 % for the main peak. Up to 600 beads per second and channel are issued from the micronozzle through an air gap towards a standard lab tube ("Eppi") attached to the rotor spinning and containing a curing agent. At spinning frequencies between 5 Hz and 28 Hz, the tubes align horizontally under rotation and return to a vertical position as soon as the rotor is at rest. The hardened beads are collected within the tube for further processing or characterization. This method is considered as a low cost technology f...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
International audienceSeeking to produce microparticles that mimic red blood cells (RBCs), we presen...
Abstract: Purpose of study: Over the past 20 years, cell microencapsulation technology has made a ...
We present a novel method for the direct, centrifugally induced fabrication of small alginate beads ...
This work presents a method for the direct, centrifugally induced fabrication of small, Ca2+ cross-l...
The purpose of this project was to model the size of calcium alginate microbeads produced by extrudi...
Alginate micro-bead production represents an interesting technological application in many fields su...
The purpose of this study was to prepare alginate (ALG) microspheres with narrow size distribution u...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation...
Microfluidic is used to perform mixing, flowing and dispersing of fluid in micro volume and they ar...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
The aim of this work is to generate monodispersed alginate microspheres with desired specifications,...
[EN] This paper describes, for the first time, the use of alginate hydrogels as miniaturised microva...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
International audienceSeeking to produce microparticles that mimic red blood cells (RBCs), we presen...
Abstract: Purpose of study: Over the past 20 years, cell microencapsulation technology has made a ...
We present a novel method for the direct, centrifugally induced fabrication of small alginate beads ...
This work presents a method for the direct, centrifugally induced fabrication of small, Ca2+ cross-l...
The purpose of this project was to model the size of calcium alginate microbeads produced by extrudi...
Alginate micro-bead production represents an interesting technological application in many fields su...
The purpose of this study was to prepare alginate (ALG) microspheres with narrow size distribution u...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation...
Microfluidic is used to perform mixing, flowing and dispersing of fluid in micro volume and they ar...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
The aim of this work is to generate monodispersed alginate microspheres with desired specifications,...
[EN] This paper describes, for the first time, the use of alginate hydrogels as miniaturised microva...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
International audienceSeeking to produce microparticles that mimic red blood cells (RBCs), we presen...
Abstract: Purpose of study: Over the past 20 years, cell microencapsulation technology has made a ...