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Circular, nanostructured and biofunctionalized hydrogel microchannels for dynamic cell adhesion studies.


ABSTRACT: We report on a method to fabricate biofunctionalized polyethylene glycol hydrogel microchannels with adjustable circular cross-sections. The inner channel surfaces are decorated with Au-nanoparticle arrays of tunable density. These Au-nanoparticles are functionalized with biomolecules whereas the hydrogel material provides an inert and biocompatible background. This technology provides control over flow conditions, channel curvature and biomolecule density on the channel surface. It can be applied for biophysical studies of cell-surface interactions mimicking, for example, leukocyte interactions with the endothelial lining in small vessels.

SUBMITTER: Kruss S 

PROVIDER: S-EPMC3448975 | biostudies-literature | 2012 Sep

REPOSITORIES: biostudies-literature

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Circular, nanostructured and biofunctionalized hydrogel microchannels for dynamic cell adhesion studies.

Kruss Sebastian S   Erpenbeck Luise L   Schön Michael P MP   Spatz Joachim P JP  

Lab on a chip 20120802 18


We report on a method to fabricate biofunctionalized polyethylene glycol hydrogel microchannels with adjustable circular cross-sections. The inner channel surfaces are decorated with Au-nanoparticle arrays of tunable density. These Au-nanoparticles are functionalized with biomolecules whereas the hydrogel material provides an inert and biocompatible background. This technology provides control over flow conditions, channel curvature and biomolecule density on the channel surface. It can be appli  ...[more]

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