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仿生天然生物材料纳米复合支架:骨替代的新兴前景。

Biomimetic Natural Biomaterial Nanocomposite Scaffolds: A Rising Prospect for Bone Replacement.

作者信息

Zaczek-Moczydłowska Maja A, Joszko Kamil, Kavoosi Mahboubeh, Markowska Aleksandra, Likus Wirginia, Ghavami Saeid, Łos Marek J

机构信息

Biotechnology Center, The Silesian University of Technology, 44-100 Gliwice, Poland.

Department of Biomechatronics, Faculty of Biomedical Engineering, The Silesian University of Technology, 41-800 Zabrze, Poland.

出版信息

Int J Mol Sci. 2024 Dec 16;25(24):13467. doi: 10.3390/ijms252413467.

Abstract

Biomimetic natural biomaterial (BNBM) nanocomposite scaffolds for bone replacement can reduce the rate of implant failure and the associated risks of post-surgical complications for patients. Traditional bone implants, like allografts, and autografts, have limitations, such as donor site morbidity and potential patient inflammation. Over two million bone transplant procedures are performed yearly, and success varies depending on the material used. This emphasizes the importance of developing new biomaterials for bone replacement. Innovative BNBM nanocomposites for modern bone fabrication can promote the colonization of the desired cellular components and provide the necessary mechanical properties. Recent studies have highlighted the advantages of BNBM nanocomposites for bone replacement; therefore, this review focuses on the application of cellulose, chitosan, alginates, collagen, hyaluronic acid, and synthetic polymers enhanced with nanoparticles for the fabrication of nanocomposite scaffolds used in bone regeneration and replacement. This work outlines the most up-to-date overview and perspectives of selected promising BNBM nanocomposites for bone replacement that could be used for scaffold fabrication and replace other biomorphic materials such as metallics, ceramics, and synthetic polymers in the future. In summary, the concluding remarks highlight the advantages and disadvantages of BNBM nanocomposites, prospects, and future directions for bone tissue regeneration and replacement.

摘要

用于骨替代的仿生天然生物材料(BNBM)纳米复合支架可以降低植入失败率以及患者术后并发症的相关风险。传统的骨植入物,如同种异体移植物和自体移植物,存在局限性,例如供体部位发病和潜在的患者炎症。每年进行超过两百万例骨移植手术,成功率因所用材料而异。这凸显了开发新型骨替代生物材料的重要性。用于现代骨制造的创新型BNBM纳米复合材料可以促进所需细胞成分的定植,并提供必要的机械性能。最近的研究突出了BNBM纳米复合材料用于骨替代的优势;因此,本综述重点关注纤维素、壳聚糖、藻酸盐、胶原蛋白、透明质酸以及用纳米颗粒增强的合成聚合物在制造用于骨再生和替代的纳米复合支架中的应用。这项工作概述了用于骨替代的选定有前景的BNBM纳米复合材料的最新概况和前景,这些材料可用于支架制造,并有可能在未来替代金属、陶瓷和合成聚合物等其他生物形态材料。总之,结语部分突出了BNBM纳米复合材料的优缺点、前景以及骨组织再生和替代的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f696/11678580/6eb58dec069e/ijms-25-13467-g001.jpg

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