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High Throughput Single-cell and Multiple-cell Micro-encapsulation
Published on: June 15, 2012
Emulsion strategies in the microencapsulation of cells: pathways to thin coherent membranes
A Leung1, Y Ramaswamy, P Munro
1Department of Chemical Engineering, The University of Queensland, Brisbane, Queensland 4072, Australia.
Abstract:
Microencapsulation of cell spheroids in an immunoselective, highly biocompatible, biomembrane offers a way to create viable implantation options in the treatment of insulin-dependent diabetes mellitus (IDDM). Traditionally the encapsulation process has been achieved through the injection/extrusion of alginate/cell mixtures into a calcium chloride solution to produce calcium alginate capsules around the cells. A novel alternative is explored here through a procedure using an emulsion process to produce thin adherent calcium alginate membranes around cell spheroids. In this study, a thorough investigation has been used to establish the emulsion process parameters that are critical to the formation of a coherent alginate coat both on a model spheroid system and subsequently on cell spheroids. Optical and fluorescence microscopy are used to assess the morphology and coherence of the calcium alginate/poly-L-ornithine/alginate (APA) capsules produced.

