Cellular transplantation is a promising technology with great clinical potential in regenerative medicine and disease management. However, effective control over patient immunological response is essential. The encapsulation of cells within hydrogel microspheres is an increasingly prevalent method for the protection of cellular grafts from immune rejection. Microfluidic “chip” reactors present elegant solutions to several capsule generation issues, including the requirement for intercapsule uniformity, high reproducibility, and sterile, good manufacturing practice compliance. This study presents a novel method for the on-chip production of stable, highly monodisperse alginate microspheres and demonstrates its utility in the encapsulation of...
Transplantation of immunoisolated endocrine tissue could improve the therapy of many diseases, espec...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
International audienceWe present here a microfluidic device that generates sub-millimetric hollow hy...
Cellular transplantation is a promising technology with great clinical potential in regenerative med...
An alternative approach to somatic gene therapy is to deliver the therapeutic protein by implanting ...
The concept of encapsulated-cell therapy is very appealing, but in practice a great deal of technolo...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
Microencapsulation of cells within microfluidic devices enables explicit control of the membrane thi...
International audienceMesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of...
A leading cause of disease and death for all age groups are syndromes characterized by widespread un...
A microfluidic technique is described to encapsulate living cells in alginate hydrogel microparticle...
The progress of medical therapies, which rely on the transplantation of microencapsulated living cel...
Replacing dysfunctional endocrine cells or tissues (e.g. islets, parathyroid tissue) by functional, ...
Mesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of solid organs due to t...
Traditionally, cell culture has been done in culture flasks or well plates where the volumes and len...
Transplantation of immunoisolated endocrine tissue could improve the therapy of many diseases, espec...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
International audienceWe present here a microfluidic device that generates sub-millimetric hollow hy...
Cellular transplantation is a promising technology with great clinical potential in regenerative med...
An alternative approach to somatic gene therapy is to deliver the therapeutic protein by implanting ...
The concept of encapsulated-cell therapy is very appealing, but in practice a great deal of technolo...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
Microencapsulation of cells within microfluidic devices enables explicit control of the membrane thi...
International audienceMesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of...
A leading cause of disease and death for all age groups are syndromes characterized by widespread un...
A microfluidic technique is described to encapsulate living cells in alginate hydrogel microparticle...
The progress of medical therapies, which rely on the transplantation of microencapsulated living cel...
Replacing dysfunctional endocrine cells or tissues (e.g. islets, parathyroid tissue) by functional, ...
Mesenchymal stem cells (MSCs) may be used as a cell source for cell therapy of solid organs due to t...
Traditionally, cell culture has been done in culture flasks or well plates where the volumes and len...
Transplantation of immunoisolated endocrine tissue could improve the therapy of many diseases, espec...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
International audienceWe present here a microfluidic device that generates sub-millimetric hollow hy...