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血管化骨再生中的压电信号

Piezoelectric Signals in Vascularized Bone Regeneration.

作者信息

D'Alessandro Delfo, Ricci Claudio, Milazzo Mario, Strangis Giovanna, Forli Francesca, Buda Gabriele, Petrini Mario, Berrettini Stefano, Uddin Mohammed Jasim, Danti Serena, Parchi Paolo

机构信息

Department of Surgical, Medical, Molecular Pathology and Emergency Medicine, University of Pisa, 56126 Pisa, Italy.

Department of Translational Research and of New Technologies in Medicine and Surgery, University of Pisa, 56126 Pisa, Italy.

出版信息

Biomolecules. 2021 Nov 20;11(11):1731. doi: 10.3390/biom11111731.

Abstract

The demand for bone substitutes is increasing in Western countries. Bone graft substitutes aim to provide reconstructive surgeons with off-the-shelf alternatives to the natural bone taken from humans or animal species. Under the tissue engineering paradigm, biomaterial scaffolds can be designed by incorporating bone stem cells to decrease the disadvantages of traditional tissue grafts. However, the effective clinical application of tissue-engineered bone is limited by insufficient neovascularization. As bone is a highly vascularized tissue, new strategies to promote both osteogenesis and vasculogenesis within the scaffolds need to be considered for a successful regeneration. It has been demonstrated that bone and blood vases are piezoelectric, namely, electric signals are locally produced upon mechanical stimulation of these tissues. The specific effects of electric charge generation on different cells are not fully understood, but a substantial amount of evidence has suggested their functional and physiological roles. This review summarizes the special contribution of piezoelectricity as a stimulatory signal for bone and vascular tissue regeneration, including osteogenesis, angiogenesis, vascular repair, and tissue engineering, by considering different stem cell sources entailed with osteogenic and angiogenic potential, aimed at collecting the key findings that may enable the development of successful vascularized bone replacements useful in orthopedic and otologic surgery.

摘要

西方国家对骨替代物的需求正在增加。骨移植替代物旨在为重建外科医生提供现成的替代品,以替代取自人类或动物物种的天然骨。在组织工程范式下,可以通过结合骨干细胞来设计生物材料支架,以减少传统组织移植的缺点。然而,组织工程骨的有效临床应用受到新血管形成不足的限制。由于骨是一种高度血管化的组织,为了成功实现再生,需要考虑在支架内促进成骨和血管生成的新策略。已经证明,骨和血管是压电性的,即这些组织在受到机械刺激时会局部产生电信号。电荷产生对不同细胞的具体影响尚未完全了解,但大量证据表明了它们的功能和生理作用。本综述总结了压电性作为骨和血管组织再生刺激信号的特殊贡献,包括成骨、血管生成、血管修复和组织工程,通过考虑具有成骨和血管生成潜力的不同干细胞来源,旨在收集关键发现,这些发现可能有助于开发在骨科和耳科手术中有用的成功的血管化骨替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3db/8615512/58e68973e415/biomolecules-11-01731-g001.jpg

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