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      Micropatterned stretching system for the investigation of mechanical tension on neural stem cells behavior.

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          Abstract

          In this study, we developed a feasible and reliable stretching platform combined with photolithography and microfluidic techniques to investigate the effect of directional tensile force and guiding microchannel on neural stem cell (NSC) behavior. Different stretching modes and culture conditions were conducted to investigate the mechanoresponse of NSCs on micropatterned substrate and to verify the effects of tension on NSCs maturation, axon sprouting, neurite outgrowth and orientation. From the results, we found that neurite extension and axon elongation were significantly enhanced and neurites were more directional orientated to parallel direction as stretching was experienced. The mechanical tension apparently influenced NSCs differentiation toward neuronal cells under stretching condition. The neuronal maturity also showed a significant difference when compared with parallel and vertical micropatterned channels. It is suggested that mechanical tension not only can guide neurites orientation and direction, but also promote their elongation length and trigger neural stem cells differentiation into mature neuronal cells.

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          Author and article information

          Journal
          Nanomedicine
          Nanomedicine : nanotechnology, biology, and medicine
          1549-9642
          1549-9634
          Apr 2013
          : 9
          : 3
          Affiliations
          [1 ] Department of Materials Science and Engineering, National Tsing Hua University, Hsinchu, Taiwan, Republic of China.
          Article
          S1549-9634(12)00424-8
          10.1016/j.nano.2012.07.008
          22922570
          fef7c707-a335-4fff-bc64-c6d5af60d6e9
          Copyright © 2013 Elsevier Inc. All rights reserved.
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