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Magnetic responsive scaffolds and magnetic fields in bone repair and regeneration 被引量:1

Magnetic responsive scaffolds and magnetic fields in bone repair and regeneration
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摘要 Increasing evidence shows that magnetic fields and magnetic responsive scaffolds can play unique roles in promoting bone repair and regeneration. This article addresses the synergistic effects of magnetic scaffolds in response to external magnetic fields on the bone regeneration in situ. Additionally, the exploration of using magnetic scaffolds as tools in the bone implant fixation, local drug delivery and mimicking microenvironment of stem cell differentiation are introduced. We also discussed possible underlying mechanisms and perspectives of magnetic responsive scaffolds in the bone repair and regeneration. Increasing evidence shows that magnetic fields and magnetic responsive scaffolds can play unique roles in promoting bone repair and regeneration. This article addresses the synergistic effects of magnetic scaffolds in response to external magnetic fields on the bone regeneration in situ. Additionally, the exploration of using magnetic scaffolds as tools in the bone implant fixation, local drug delivery and mimicking microenvironment of stem cell differentiation are introduced. We also discussed possible underlying mechanisms and perspectives of magnetic responsive scaffolds in the bone repair and regeneration.
出处 《Frontiers of Materials Science》 SCIE CSCD 2014年第1期20-31,共12页 材料学前沿(英文版)
关键词 bone repair magnetic scaffold magnetic field physical stimulation bone repair magnetic scaffold magnetic field physical stimulation
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  • 1Li X, Wang L, Fan Y, et al. Nanostructured scaffolds for bone tissue engineering. Journal of Biomedical Materials Research Part A, 2013, 101A(8): 2424-2435.
  • 2Lopa S, Madry H. Bioinspired scaffolds for osteochondral regeneration. Tissue Engineering Part A, 2014, doi: 10.1089/ten. tea.2013.0356.
  • 3Ko E, Cho S W. Biomimetic polymer scaffolds to promote stem cell-mediated osteogenesis. International Journal of Stem Cells, 2013, 6(2): 87-91.
  • 4Li J, Baker B A, Mou X, et al. Biopolymer/calcium phosphate scaffolds for bone tissue engineering. Advanced Healthcare Materials, 2014, doi: 10.1002/adhm.201300562.
  • 5] Orr A W, Helmke B P, Blackman B R, et al. Mechanisms of mechanotransduction. Developmental Cell, 2006, 10(1): 11-20.
  • 6Morgan E F, Gleason R E, Hayward L N M, et al. Mechanotransduction and fracture repair. The Journal of Bone & Joint Surgery, 2008, 90(Suppl 1): 25-30.
  • 7Soucacos P N, Johnson E O, Babis G. An update on recent advances in bone regeneration. Injury, 2008, 39(Suppl 2): S1 $4.
  • 8Epari D R, Duda G N, Thompson M S. Mechanobiology of bone healing and regeneration: in vivo models. Proceedings of the Institution of Mechanical Engineers Part H: Journal of Engineer- ing in Medicine, 2010, 224(12): 1543-1553.
  • 9Galli C, Passeri G, Macaluso G M. Osteocytes and WNT: the mechanical control of bone formation. Journal of Dental Research, 2010, 89(4): 331-343.
  • 10Chen J, Rungsiyakull C, Li W, et al. Multiscale design of surface morphological gradient for osseointegration. Journal of the Mechanical Behavior of Biomedical Materials, 2013, 20:387 397.

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