In this work, we present a robust microfluidic platform for controlled and complete on-chip generation of alginate microcapsules with single and double liquid cores. A combined Coflow and T-junction configuration implemented in a hybrid glass-PDMS (Polydimethylsiloxane) device is used for the generation of microcapsules with oil as liquid core. Frequency matching of oil-alginate double emulsion generation with that of aqueous Calcium chloride droplet generation allows for controlled merging of the two, resulting in reliable production of microcapsules. Confocal imaging of microcapsule cross-section reveals presence of intact liquid core. In the case of double core microcapsules, the two cores are well separated by alginate layer ensuring th...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
A key engineering challenge in designing microcapsules made from biocompatible alginate is maintaini...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
International audienceDroplets millifluidic devices are efficient tools to produce monodisperse emul...
A microfluidic technique is described to encapsulate living cells in alginate hydrogel microparticle...
Cellular transplantation is a promising technology with great clinical potential in regenerative med...
Alginate is used extensively in microfluidic devices to produce discrete beads or fibres at the micr...
Microfluidic devices can be used for many applications, including the formation of well-controlled e...
This thesis describes novel research into the generation and manipulation of aqueous droplets within...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
International audienceAlginate microgels are widely used as delivery systems in food, cosmetics, and...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
This work aims to develop an original alginate micro-emulsion combining with droplets microfluidic m...
Alginate hydrogel particles are promising delivery systems for protein encapsulation and controlled ...
Microencapsulation of cells within microfluidic devices enables explicit control of the membrane thi...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
A key engineering challenge in designing microcapsules made from biocompatible alginate is maintaini...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
International audienceDroplets millifluidic devices are efficient tools to produce monodisperse emul...
A microfluidic technique is described to encapsulate living cells in alginate hydrogel microparticle...
Cellular transplantation is a promising technology with great clinical potential in regenerative med...
Alginate is used extensively in microfluidic devices to produce discrete beads or fibres at the micr...
Microfluidic devices can be used for many applications, including the formation of well-controlled e...
This thesis describes novel research into the generation and manipulation of aqueous droplets within...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
International audienceAlginate microgels are widely used as delivery systems in food, cosmetics, and...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
This work aims to develop an original alginate micro-emulsion combining with droplets microfluidic m...
Alginate hydrogel particles are promising delivery systems for protein encapsulation and controlled ...
Microencapsulation of cells within microfluidic devices enables explicit control of the membrane thi...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
A key engineering challenge in designing microcapsules made from biocompatible alginate is maintaini...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...