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用于周围神经再生的丝基生物材料的研究进展

[Research progress of silk-based biomaterials for peripheral nerve regeneration].

作者信息

Wu Junfeng, Kong Xiangdong, Lü Qiang

机构信息

Institute of Smart Biomedical Materials, School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou Zhejiang, 310018, P. R. China.

Institutes for Translational Medicine, Soochow University, Suzhou Jiangsu, 215123, P. R. China.

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2024 Sep 15;38(9):1149-1156. doi: 10.7507/1002-1892.202402071.

Abstract

OBJECTIVE

To describe the research progress of silk-based biomaterials in peripheral nerve repair and provide useful ideals to accelerate the regeneration of large-size peripheral nerve injury.

METHODS

The relative documents about silk-based biomaterials used in peripheral nerve regeneration were reviewed and the different strategies that could accelerate peripheral nerve regeneration through building bioactive microenvironment with silk fibroin were discussed.

RESULTS

Many silk fibroin tissue engineered nerve conduits have been developed to provide multiple biomimetic microstructures, and different microstructures have different mechanisms of promoting nerve repair. Biomimetic porous structures favor the nutrient exchange at wound sites and inhibit the invasion of scar tissue. The aligned structures can induce the directional growth of nerve tissue, while the multiple channels promote the axon elongation. When the fillers are introduced to the conduits, better growth, migration, and differentiation of nerve cells can be achieved. Besides biomimetic structures, different nerve growth factors and bioactive drugs can be loaded on silk carriers and released slowly at nerve wounds, providing suitable biochemical cues. Both the biomimetic structures and the loaded bioactive ingredients optimize the niches of peripheral nerves, resulting in quicker and better nerve repair. With silk biomaterials as a platform, fusing multiple ways to achieve the multidimensional regulation of nerve microenvironments is becoming a critical strategy in repairing large-size peripheral nerve injury.

CONCLUSION

Silk-based biomaterials are useful platforms to achieve the design of biomimetic hierarchical microstructures and the co-loading of various bioactive ingredients. Silk fibroin nerve conduits provide suitable microenvironment to accelerate functional recovery of peripheral nerves. Different optimizing strategies are available for silk fibroin biomaterials to favor the nerve regeneration, which would satisfy the needs of various nerve tissue repair. Bioactive silk conduits have promising future in large-size peripheral nerve regeneration.

摘要

目的

阐述基于丝绸的生物材料在周围神经修复方面的研究进展,为加速大尺寸周围神经损伤的再生提供有益思路。

方法

回顾了用于周围神经再生的基于丝绸的生物材料的相关文献,并讨论了通过丝素蛋白构建生物活性微环境来加速周围神经再生的不同策略。

结果

已开发出许多丝素蛋白组织工程神经导管,以提供多种仿生微结构,不同的微结构促进神经修复的机制不同。仿生多孔结构有利于伤口部位的营养交换并抑制瘢痕组织的侵入。排列结构可诱导神经组织的定向生长,而多通道则促进轴突伸长。当向导管中引入填充物时,可实现神经细胞更好的生长、迁移和分化。除了仿生结构外,可以将不同的神经生长因子和生物活性药物负载在丝绸载体上,并在神经伤口处缓慢释放,提供合适的生化信号。仿生结构和负载的生物活性成分都优化了周围神经的生态位,从而实现更快、更好的神经修复。以丝绸生物材料为平台,融合多种方式实现对神经微环境的多维调控正成为修复大尺寸周围神经损伤的关键策略。

结论

基于丝绸的生物材料是实现仿生分层微结构设计和各种生物活性成分共负载的有用平台。丝素蛋白神经导管提供合适的微环境以加速周围神经的功能恢复。丝素蛋白生物材料有不同的优化策略有利于神经再生,可满足各种神经组织修复的需求。具有生物活性的丝绸导管在大尺寸周围神经再生方面前景广阔。

相似文献

1
[Research progress of silk-based biomaterials for peripheral nerve regeneration].用于周围神经再生的丝基生物材料的研究进展
Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2024 Sep 15;38(9):1149-1156. doi: 10.7507/1002-1892.202402071.
4
Biomimetic Silk Scaffolds with an Amorphous Structure for Soft Tissue Engineering.用于软组织工程的具有非晶结构的仿生丝支架。
ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9290-9300. doi: 10.1021/acsami.7b19204. Epub 2018 Mar 8.

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