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用于骨组织工程的压电支架作为智能材料

Piezoelectric Scaffolds as Smart Materials for Bone Tissue Engineering.

作者信息

Zaszczyńska Angelika, Zabielski Konrad, Gradys Arkadiusz, Kowalczyk Tomasz, Sajkiewicz Paweł

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawińskiego 5B, 02-106 Warsaw, Poland.

出版信息

Polymers (Basel). 2024 Oct 2;16(19):2797. doi: 10.3390/polym16192797.

Abstract

Bone repair and regeneration require physiological cues, including mechanical, electrical, and biochemical activity. Many biomaterials have been investigated as bioactive scaffolds with excellent electrical properties. Amongst biomaterials, piezoelectric materials (PMs) are gaining attention in biomedicine, power harvesting, biomedical devices, and structural health monitoring. PMs have unique properties, such as the ability to affect physiological movements and deliver electrical stimuli to damaged bone or cells without an external power source. The crucial bone property is its piezoelectricity. Bones can generate electrical charges and potential in response to mechanical stimuli, as they influence bone growth and regeneration. Piezoelectric materials respond to human microenvironment stimuli and are an important factor in bone regeneration and repair. This manuscript is an overview of the fundamentals of the materials generating the piezoelectric effect and their influence on bone repair and regeneration. This paper focuses on the state of the art of piezoelectric materials, such as polymers, ceramics, and composites, and their application in bone tissue engineering. We present important information from the point of view of bone tissue engineering. We highlight promising upcoming approaches and new generations of piezoelectric materials.

摘要

骨修复与再生需要生理信号,包括机械、电和生化活性。许多生物材料已被研究作为具有优异电学性能的生物活性支架。在生物材料中,压电材料(PMs)在生物医学、能量收集、生物医学装置和结构健康监测方面正受到关注。压电材料具有独特的性能,例如能够影响生理运动并在无需外部电源的情况下向受损骨骼或细胞传递电刺激。骨骼的关键特性是其压电性。骨骼在受到机械刺激时能够产生电荷和电位,因为它们会影响骨骼的生长和再生。压电材料对人体微环境刺激做出反应,是骨再生和修复的重要因素。本手稿概述了产生压电效应的材料的基本原理及其对骨修复和再生的影响。本文重点介绍了压电材料的最新进展,如聚合物、陶瓷和复合材料,以及它们在骨组织工程中的应用。我们从骨组织工程的角度提供重要信息。我们强调了有前景的未来方法和新一代压电材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3f/11479154/7b6444a7eced/polymers-16-02797-g001.jpg

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