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智能高分子生物材料在骨再生中的作用:综述

The role of smart polymeric biomaterials in bone regeneration: a review.

作者信息

Xing Yanghui, Qiu Linhui, Liu Danqing, Dai Sihan, Sheu Chia-Lin

机构信息

Department of Biomedical Engineering, Shantou University, Shantou, China.

出版信息

Front Bioeng Biotechnol. 2023 Aug 17;11:1240861. doi: 10.3389/fbioe.2023.1240861. eCollection 2023.

Abstract

Addressing critical bone defects necessitates innovative solutions beyond traditional methods, which are constrained by issues such as immune rejection and donor scarcity. Smart polymeric biomaterials that respond to external stimuli have emerged as a promising alternative, fostering endogenous bone regeneration. Light-responsive polymers, employed in 3D-printed scaffolds and photothermal therapies, enhance antibacterial efficiency and bone repair. Thermo-responsive biomaterials show promise in controlled bioactive agent release, stimulating osteocyte differentiation and bone regeneration. Further, the integration of conductive elements into polymers improves electrical signal transmission, influencing cellular behavior positively. Innovations include advanced 3D-printed poly (l-lactic acid) scaffolds, polyurethane foam scaffolds promoting cell differentiation, and responsive polymeric biomaterials for osteogenic and antibacterial drug delivery. Other developments focus on enzyme-responsive and redox-responsive polymers, which offer potential for bone regeneration and combat infection. Biomaterials responsive to mechanical, magnetic, and acoustic stimuli also show potential in bone regeneration, including mechanically-responsive polymers, magnetic-responsive biomaterials with superparamagnetic iron oxide nanoparticles, and acoustic-responsive biomaterials. In conclusion, smart biopolymers are reshaping scaffold design and bone regeneration strategies. However, understanding their advantages and limitations is vital, indicating the need for continued exploratory research.

摘要

解决严重的骨缺损问题需要超越传统方法的创新解决方案,传统方法受到免疫排斥和供体稀缺等问题的限制。能够响应外部刺激的智能聚合物生物材料已成为一种有前途的替代方案,可促进内源性骨再生。用于3D打印支架和光热疗法的光响应聚合物可提高抗菌效率和骨修复能力。热响应生物材料在控制生物活性剂释放、刺激骨细胞分化和骨再生方面显示出前景。此外,将导电元素整合到聚合物中可改善电信号传输,对细胞行为产生积极影响。创新包括先进的3D打印聚(L-乳酸)支架、促进细胞分化的聚氨酯泡沫支架以及用于成骨和抗菌药物递送的响应性聚合物生物材料。其他进展集中在酶响应和氧化还原响应聚合物上,它们在骨再生和对抗感染方面具有潜力。对机械、磁和声学刺激有响应的生物材料在骨再生中也显示出潜力,包括机械响应聚合物、含有超顺磁性氧化铁纳米颗粒的磁响应生物材料以及声响应生物材料。总之,智能生物聚合物正在重塑支架设计和骨再生策略。然而,了解它们的优点和局限性至关重要,这表明需要持续进行探索性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1805/10469876/499ef0db2262/fbioe-11-1240861-g001.jpg

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