A controlled synthesis of polymeric particles is becoming increasingly important because of emerging applications ranging from medical diagnostics to self-assembly. Centrifugal synthesis of hydrogel microparticles is a promising method, combining rapid particle synthesis and the ease of manufacturing with readily available laboratory equipment. This method utilizes centrifugal forces to extrude an aqueous polymer solution, sodium alginate (NaALG) through a nozzle. The extruded solution forms droplets that quickly cross-link upon contact with aqueous calcium chloride (CaCl<sub>2</sub>) solution to form hydrogel particles. The size distribution of hydrogel particles is dictated by the pinch-off behavior of the extruded solution through a bala...
Alginate micro-bead production represents an interesting technological application in many fields su...
Abstract: We report observation and manipulation of a capillary jet under ultra-high centrifugal gra...
Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
This article belongs to the Special Issue Advanced Polymeric Biomaterials: Preparation, Characteriza...
A new approach based on the atomization of non-Newtonian fluids has been proposed to produce micropa...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
International audienceThis review examines the preparation of alginate hydrogel microparticles by us...
We report observation and manipulation of a capillary jet under ultra-high centrifugal gravity in a ...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
International audienceSeeking to produce microparticles that mimic red blood cells (RBCs), we presen...
We present a novel method for the direct, centrifugally induced fabrication of small alginate beads ...
Herein we describe a versatile new strategy for producing spherical solid particles with 2 mm in siz...
Fine calcium alginate microgel particles, down to particle sizes lower than 100 nm, were produced us...
Ca-alginate microgel particles have been extensively studied for use in various foods and in biomedi...
Alginate micro-bead production represents an interesting technological application in many fields su...
Abstract: We report observation and manipulation of a capillary jet under ultra-high centrifugal gra...
Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation...
A controlled synthesis of polymeric particles is becoming increasingly important because of emerging...
This article belongs to the Special Issue Advanced Polymeric Biomaterials: Preparation, Characteriza...
A new approach based on the atomization of non-Newtonian fluids has been proposed to produce micropa...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
International audienceThis review examines the preparation of alginate hydrogel microparticles by us...
We report observation and manipulation of a capillary jet under ultra-high centrifugal gravity in a ...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
International audienceSeeking to produce microparticles that mimic red blood cells (RBCs), we presen...
We present a novel method for the direct, centrifugally induced fabrication of small alginate beads ...
Herein we describe a versatile new strategy for producing spherical solid particles with 2 mm in siz...
Fine calcium alginate microgel particles, down to particle sizes lower than 100 nm, were produced us...
Ca-alginate microgel particles have been extensively studied for use in various foods and in biomedi...
Alginate micro-bead production represents an interesting technological application in many fields su...
Abstract: We report observation and manipulation of a capillary jet under ultra-high centrifugal gra...
Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation...