Frontiers in Bioengineering and Biotechnology (Jul 2022)

Researching progress on bio-reactive electrogenic materials with electrophysiological activity for enhanced bone regeneration

  • Shaojie Dong,
  • Shaojie Dong,
  • Shaojie Dong,
  • Yuwei Zhang,
  • Yuwei Zhang,
  • Yukun Mei,
  • Yukun Mei,
  • Yifei Zhang,
  • Yifei Zhang,
  • Yaqi Hao,
  • Yaqi Hao,
  • Yaqi Hao,
  • Beilei Liang,
  • Beilei Liang,
  • Beilei Liang,
  • Weijiang Dong,
  • Rui Zou,
  • Rui Zou,
  • Lin Niu,
  • Lin Niu,
  • Lin Niu

DOI
https://doi.org/10.3389/fbioe.2022.921284
Journal volume & issue
Vol. 10

Abstract

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Bone tissues are dynamically reconstructed during the entire life cycle phase, which is an exquisitely regulated process controlled by intracellular and intercellular signals transmitted through physicochemical and biochemical stimulation. Recently, the role of electrical activity in promoting bone regeneration has attracted great attention, making the design, fabrication, and selection of bioelectric bio-reactive materials a focus. Under specific conditions, piezoelectric, photoelectric, magnetoelectric, acoustoelectric, and thermoelectric materials can generate bioelectric signals similar to those of natural tissues and stimulate osteogenesis-related signaling pathways to enhance the regeneration of bone defects, which can be used for designing novel smart biological materials for engineering tissue regeneration. However, literature summarizing studies relevant to bioelectric materials for bone regeneration is rare to our knowledge. Consequently, this review is mainly focused on the biological mechanism of electrical stimulation in the regeneration of bone defects, the current state and future prospects of piezoelectric materials, and other bioelectric active materials suitable for bone tissue engineering in recent studies, aiming to provide a theoretical basis for novel clinical treatment strategies for bone defects.

Keywords