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用于骨组织工程的压电生物材料——综述

Piezoelectric Biomaterials for Use in Bone Tissue Engineering-A Narrative Review.

作者信息

Choudhury Sandeep, Das Debolina, Roy Sandipan, Chowdhury Amit Roy

机构信息

Department of Aerospace Engineering and Applied Mechanics, Indian Institute of Engineering Science and Technology, Howrah, West Bengal, India.

Department of Mechanical Engineering, Indian Institute of Engineering Science and Technology, Howrah, West Bengal, India.

出版信息

J Biomed Mater Res B Appl Biomater. 2025 Apr;113(4):e35564. doi: 10.1002/jbm.b.35564.

Abstract

To examine natural bone's bioelectrical traits, notably its piezoelectricity, and to look into how these characteristics influence bone growth and repair. In the context of exploring the potential of piezoelectric biomaterials, such as biopolymers and bio-ceramics, towards orthopedic and bone regeneration applications, the research seeks to evaluate the significance of piezoelectricity-driven osteogenesis. The paper reviews recent research on bone's electrical and dielectric properties, surface polarization/electrical stimulation effects interacting with cell activity and the effectiveness of piezoelectric biomaterials to support tissues' regenerative process. The study includes a number of materials, such as collagen, polyvinylidene fluoride (PVDF) and barium titanate. The applications of piezoelectric bio-ceramics, piezoelectric organic polymers, and piezoelectric natural polymers are particularly highlighted. Piezoelectric biomaterials are being shown in recent studies to enhance cellular metabolism in vitro as well as promote the regeneration of tissues in vivo, especially when paired with electric field stimulation or interface polarization. Piezoelectric bio-ceramics like magnesium silicate and barium titanate, as well as biopolymers like collagen and PVDF, have shown possibilities for orthopedic applications. However, there are several challenges regarding the manufacturing of bio-ceramics of specific compositions having the desired properties. This review highlighted the potential of piezoelectric biomaterials in orthopedic applications with special emphasis on biopolymers and bioceramics. Therefore, these types of materials have huge potential for bone regeneration because they can mimic the piezoelectric properties of bone and allow better advances in tissue engineering or regenerative medicine. To date, little is known about their mechanism of action, and modifications are needed to improve efficacy for clinical uptake.

摘要

研究天然骨的生物电特性,尤其是其压电性,并探究这些特性如何影响骨生长和修复。在探索压电生物材料(如生物聚合物和生物陶瓷)在骨科和骨再生应用中的潜力的背景下,该研究旨在评估压电驱动成骨的重要性。本文综述了近期关于骨的电学和介电特性、与细胞活性相互作用的表面极化/电刺激效应以及压电生物材料支持组织再生过程有效性的研究。该研究包括多种材料,如胶原蛋白、聚偏二氟乙烯(PVDF)和钛酸钡。特别强调了压电生物陶瓷、压电有机聚合物和压电天然聚合物的应用。近期研究表明,压电生物材料在体外可增强细胞代谢,在体内可促进组织再生,尤其是与电场刺激或界面极化结合时。硅酸镁和钛酸钡等压电生物陶瓷以及胶原蛋白和PVDF等生物聚合物已显示出在骨科应用中的潜力。然而,制造具有所需特性的特定成分生物陶瓷存在若干挑战。本综述强调了压电生物材料在骨科应用中的潜力,特别侧重于生物聚合物和生物陶瓷。因此,这类材料在骨再生方面具有巨大潜力,因为它们可以模拟骨的压电特性,并在组织工程或再生医学方面取得更好进展。迄今为止,人们对其作用机制了解甚少,需要进行改进以提高临床应用效果。

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