4.7 Article

Physical stimulations and their osteogenesis-inducing mechanisms

期刊

出版社

WHIOCE PUBLISHING PTE LTD, SINGAPORE
DOI: 10.18063/IJB.v4i2.138

关键词

physical stimulations; cell activity; osteogenesis-inducing mechanisms; bone repair

资金

  1. Natural Science Foundation of China [51575537, 81572577, 51705540]
  2. Hunan Provincial Natural Science Foundation of China [2016JJ1027]
  3. Project of Innovation-driven Plan of Central South University [2016CX023]
  4. Open-End Fund for the Valuable and Precision Instruments of Central South University
  5. State Key Laboratory of Solidification Processing in NWPU [SKLSP201605]
  6. National Postdoctoral Program for Innovative Talents [BX201700291]
  7. Project of State Key Laboratory of High Performance Complex Manufacturing
  8. Project of Hunan Provincial Science and Technology Plan [2017RS3008]

向作者/读者索取更多资源

Physical stimulations such as magnetic, electric and mechanical stimulation could enhance cell activity and promote bone formation in bone repair process via activating signal pathways, modulating ion channels, regulating bone-related gene expressions, etc. In this paper, bioeffects of physical stimulations on cell activity, tissue growth and bone healing were systematically summarized, which especially focused on their osteogenesis-inducing mechanisms. Detailedly, magnetic stimulation could produce Hall effect which improved the permeability of cell membrane and promoted the migration of ions, especially accelerating the extracellular calcium ions to pass through cell membrane. Electric stimulation could induce inverse piezoelectric effect which generated electric signals, accordingly up-regulating intracellular calcium levels and growth factor synthesis. And mechanical stimulation could produce mechanical signals which were converted into corresponding biochemical signals, thus activating various signaling pathways on cell membrane and inducing a series of gene expressions. Besides, bioeffects of physical stimulations combined with bone scaffolds which fabricated using 3D printing technology on bone cells were discussed. The equipments of physical stimulation system were described. The opportunities and challenges of physical stimulations were also presented from the perspective of bone repair.

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