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承重骨大骨缺损的治疗:传统与新型骨移植材料

Treatment of large bone defects in load-bearing bone: traditional and novel bone grafts.

作者信息

Yu Dan, Shen Wenyi, Dai Jiahui, Zhu Huiyong

机构信息

Department of Oral and Maxillofacial Surgery, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310003, China.

Department of Stomatology, Zhejiang University School of Medicine, Hangzhou 310058, China.

出版信息

J Zhejiang Univ Sci B. 2025 Apr 30;26(5):421-447. doi: 10.1631/jzus.B2300669.

Abstract

Large bone defects in load-bearing bone can result from tumor resection, osteomyelitis, trauma, and other factors. Although bone has the intrinsic potential to self-repair and regenerate, the repair of large bone defects which exceed a certain critical size remains a substantial clinical challenge. Traditionally, repair methods involve using autologous or allogeneic bone tissue to replace the lost bone tissue at defect sites, and autogenous bone grafting remains the "gold standard" treatment. However, the application of traditional bone grafts is limited by drawbacks such as the quantity of extractable bone, donor-site morbidities, and the risk of rejection. In recent years, the clinical demand for alternatives to traditional bone grafts has promoted the development of novel bone-grafting substitutes. In addition to osteoconductivity and osteoinductivity, optimal mechanical properties have recently been the focus of efforts to improve the treatment success of novel bone-grafting alternatives in load-bearing bone defects, but most biomaterial synthetic scaffolds cannot provide sufficient mechanical strength. A fundamental challenge is to find an appropriate balance between mechanical and tissue-regeneration requirements. In this review, the use of traditional bone grafts in load-bearing bone defects, as well as their advantages and disadvantages, is summarized and reviewed. Furthermore, we highlight recent development strategies for novel bone grafts appropriate for load-bearing bone defects based on substance, structural, and functional bionics to provide ideas and directions for future research.

摘要

承重骨的大骨缺损可由肿瘤切除、骨髓炎、创伤及其他因素引起。尽管骨具有自我修复和再生的内在潜力,但超过一定临界尺寸的大骨缺损的修复仍然是一项重大的临床挑战。传统上,修复方法包括使用自体或异体骨组织来替代缺损部位丢失的骨组织,自体骨移植仍然是“金标准”治疗方法。然而,传统骨移植的应用受到可提取骨量、供区并发症以及排斥风险等缺点的限制。近年来,对传统骨移植替代品的临床需求推动了新型骨移植替代物的发展。除了骨传导性和骨诱导性外,最佳机械性能最近已成为提高新型骨移植替代物在承重骨缺损治疗成功率的努力重点,但大多数生物材料合成支架无法提供足够的机械强度。一个根本挑战是在机械性能和组织再生需求之间找到适当的平衡。在本综述中,总结并回顾了传统骨移植在承重骨缺损中的应用及其优缺点。此外,我们重点介绍了基于物质、结构和功能仿生学的适用于承重骨缺损的新型骨移植的最新发展策略,为未来研究提供思路和方向。

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本文引用的文献

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3D bioprinting of cartilaginous templates for large bone defect healing.用于大骨缺损愈合的软骨模板的3D生物打印
Acta Biomater. 2023 Jan 15;156:61-74. doi: 10.1016/j.actbio.2022.07.037. Epub 2022 Jul 28.

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