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      Dynamic cell patterning of photoresponsive hyaluronic acid hydrogels.

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          Abstract

          Techniques to pattern cells on biocompatible hydrogels allow for the creation of highly controlled cell microenvironments within materials that mimic the physicochemical properties of native tissues. Such technology has the potential to further enhance our knowledge of cell biology and to play a role in the development of novel tissue engineering devices. Light is an ideal stimulus to catalyze pattern formation since it can be controlled spatially as well as temporally. Herein, we have developed and enhanced a hydrogel cell patterning strategy. It is based on photoactive caged RGDS peptides incorporated into a hyaluronic acid (HA) hydrogel, which can be subsequently activated with near-UV light to create cell-adhesive regions within an otherwise non-adhesive hydrogel. With this strategy, we have been able to pattern multiple cell populations-either in contact with one another or held apart-on an underlying chemically patterned HA hydrogel. Furthermore, the hydrogel cell pattern could be altered with time, even 2 weeks after initial seeding, to create additional adhesive regions to regulate the direction of cell growth and migration. These dynamic hydrogel cell patterns, created with a standard fluorescence microscope, were shown to be robust and lasted at least 3 weeks in vitro.

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          Author and article information

          Journal
          J Biomed Mater Res A
          Journal of biomedical materials research. Part A
          Wiley-Blackwell
          1552-4965
          1549-3296
          Feb 2014
          : 102
          : 2
          Affiliations
          [1 ] Department of Chemical and Biological Engineering, University of Ottawa, Ottawa, Ontario, K1N 6N5, Canada.
          Article
          10.1002/jbm.a.34712
          23520029
          f32d77d6-c52f-469b-9266-23ed3a5cebca
          History

          co-culture,dynamic,hyaluronic acid,photocaged peptides,cell patterning

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