Journal article

Wet-spun biodegradable fibers on conducting platforms: novel architectures for muscle regeneration

JM Razal, M Kita, AF Quigley, E Kennedy, SE Moulton, RMI Kapsa, GM Clark, CC Wallace

Advanced Functional Materials | Published : 2009

Abstract

Novel biosynthetic platforms supporting ex vivo growth of partially differentiated muscle cells in an aligned linear orientation that is consistent with the structural requirements of muscle tissue are described. These platforms consist of biodegradable polymer fibers spatially aligned on a conducting polymer substrate. Long multinucleated myotubes are formed from differentiation of adherent myoblasts, which align longitudinally to the fiber axis to form linear cell-seeded biosynthetic fiber constructs. The biodegradable polymer fibers bearing undifferentiated myoblasts can be detached from the substrate following culture. The ability to remove the muscle cell-seeded polymer fibers when requ..

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University of Melbourne Researchers

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Funding Acknowledgements

J. M. R. and M. K. have equally contributed to this work. The authors gratefully acknowledge the Australian Research Council (ARC) for funding the ARC Centre of Excellence for Electromaterials Science (ACES), a Federation Fellowship for G. G. W., and an Australian Post-Doctoral Fellowship for J. M. R. The authors thank S. Ashraffor the supply of PMAS and the ACES Bionics Group for helpful discussions. Supporting Information is available online from Wiley InterScience or from the author.