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Microfluidic-based generation of size-controlled, biofunctionalized synthetic polymer microgels for cell encapsulation.


ABSTRACT: Cell and islet microencapsulation in synthetic hydrogels provides an immunoprotective and cell-supportive microenvironment. A microfluidic strategy for the genaration of biofunctionalized, synthetic microgel particles with precise control over particle size and molecular permeability for cell and protein delivery is presented. These engineered capsules support high cell viability and function of encapsulated human stem cells and islets.

SUBMITTER: Headen DM 

PROVIDER: S-EPMC4058833 | biostudies-literature | 2014 May

REPOSITORIES: biostudies-literature

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Microfluidic-based generation of size-controlled, biofunctionalized synthetic polymer microgels for cell encapsulation.

Headen Devon M DM   Aubry Guillaume G   Lu Hang H   García Andrés J AJ  

Advanced materials (Deerfield Beach, Fla.) 20140311 19


Cell and islet microencapsulation in synthetic hydrogels provides an immunoprotective and cell-supportive microenvironment. A microfluidic strategy for the genaration of biofunctionalized, synthetic microgel particles with precise control over particle size and molecular permeability for cell and protein delivery is presented. These engineered capsules support high cell viability and function of encapsulated human stem cells and islets. ...[more]

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