A Combinational Effect of %26quot;Bulk%26quot; and %26quot;Surface%26quot; Shape-Memory Transitions on the Regulation of Cell Alignment

作者:Uto Koichiro; Aoyagi Takao; DeForest Cole A; Hoffman Allan S; Ebara Mitsuhiro
来源:Advanced Healthcare Materials, 2017, 6(9): 1601439.
DOI:10.1002/adhm.201601439

摘要

A novel shape-memory cell culture platform has been designed that is capable of simultaneously tuning surface topography and dimensionality to manipulate cell alignment. By crosslinking poly(epsilon-caprolactone) (PCL) macro-monomers of precisely designed nanoarchitectures, a shape-memory PCL with switching temperature near body temperature is successfully prepared. The temporary strain-fixed PCLs are prepared by processing through heating, stretching, and cooling about the switching temperature. Temporary nano-wrinkles are also formed spontaneously during the strain-fixing process with magnitudes that are dependent on the applied strain. The surface features completely transform from wrinkled to smooth upon shape-memory activation over a narrow temperature range. Shape-memory activation also triggers dimensional deformation in an initial fixed strain-dependent manner. A dynamic cell-orienting study demonstrates that surface topographical changes play a dominant role in cell alignment for samples with lower fixed strain, while dimensional changes play a dominant role in cell alignment for samples with higher fixed strain. The proposed shape-memory cell culture platform will become a powerful tool to investigate the effects of spatiotemporally presented mechanostructural stimuli on cell fate.

  • 出版日期2017-5-10