Abstract
The development of biomedical scaffolds mimicking a heterogeneous cellular microenvironment for a specified regulation of cell-fates is very promising for tissue engineering. In this study, three-dimensional scaffolds with heterogeneous microstructure were developed using a DMD-PP apparatus. During the fabrication process, this apparatus can efficiently switch monomers to form microstructures with localized, different material properties; the resolution in the arrangement of material properties is comparable to the characteristic size of functional subunits in living organs, namely, a hundred microns. The effectiveness of this DMD-PP apparatus is demonstrated by a woodpile microstructure with heterogeneous fluorescence and also by a microporous cellculturing scaffold with selected sites for protein adhesion. Cell-cultivation experiment was performed with the microporous scaffold, in which selective cell adhesion was observed. © Springer Science+Business Media, LLC 2010.
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Han, L. H., Suri, S., Schmidt, C. E., & Chen, S. (2010). Fabrication of three-dimensional scaffolds for heterogeneous tissue engineering. Biomedical Microdevices, 12(4), 721–725. https://doi.org/10.1007/s10544-010-9425-2
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