实用医学杂志 ›› 2022, Vol. 38 ›› Issue (22): 2868-2873.doi: 10.3969/j.issn.1006⁃5725.2022.22.019

• 综述 • 上一篇    下一篇

3D打印仿生支架在脊髓损伤修复中的研究进展 

张浩1,2 张钰1,3 肖世宁1,3 刘家明1,3    

  1. 1 南昌大学第一附属医院骨科(南昌 330006);2 南昌大学第四临床医学院(南昌 330100);3 南昌大学脊柱脊 髓研究所(南昌 330006)

  • 出版日期:2022-11-25 发布日期:2022-11-25
  • 通讯作者: 刘家明 E⁃mail:liujiamingdr@hotmail.com
  • 基金资助:
    江西省“双千计划”首批培养类项目;江西省自然科学基金项目(编号:20142BAB215046)

Experimental research progress of 3D printing bionic scaffold in repairing of spinal cord injury

ZHANG Hao*,ZHANG Yu,XIAO Shining,LIU Jiaming.   

  1. Department of Orthopaedics,the First Affiliated Hospital of Nan⁃ chang University,Nanchang 330006,China;*The Fourth Clinical Medical College of Nanchang University,Nan⁃ chang 330100,China

  • Online:2022-11-25 Published:2022-11-25
  • Contact: LIU Jiaming E⁃mail:liujiamingdr@hotmail.com

摘要:

利用 3D 打印技术制造的新型仿生脊髓支架具有良好的生物相容性和力学性能,可以有效 改善脊髓损伤(spinal cord injury,SCI)后产生的微环境紊乱和胶质瘢痕问题,通过联合特定的神经细胞还 可以使 SCI 的修复更加具有针对性和特异性。近年来,许多新型脊髓支架及其相应的治疗方法被研发出 来,包括以胶原蛋白为基础混合其他材料进行改良的新型支架、新型化合材料脊髓支架和支架载特定因 子修饰的神经细胞的新型治疗思路等,通过动物实验验证了治疗方法的可行性,为临床 SCI 的修复治疗提 供了新的方向。本文就3D 打印仿生支架在脊髓损伤修复中的实验研究进展进行综述。

关键词:

脊髓损伤修复, 3D 打印技术, 生物支架, 神经细胞, 生物材料

Abstract:

The new biomimetic spinal cord scaffold manufactured by 3D printing has good biocompatibility and mechanical properties,which can effectively improve the microenvironment disorder and glial scar problems after spinal cord injury(SCI). By combining specific nerve cells,the repair of SCI can also be more targeted and specific. In recent years,many new spinal scaffolds and their corresponding treatment methods have been devel⁃ oped,including new scaffolds based on collagen and improved by mixing other materials,new synthetic materials spinal scaffolds and new treatment ideas of nerve cells modified by specific factors on scaffolds. The feasibility of the treatment methods has been verified through animal experiments,which provides a new direction for the repair and treatment of SCI. This article reviews the experimental research progress of 3D printed biomimetic scaffolds in the repair of spinal cord injury.

Key words:

spinal cord injury repair, 3D printing technology, biological scaffold, nerve cells, biological materials