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一种具有双电活性特性的自供电三明治结构支架,用于椎间盘切除术后再生受损的椎间盘。

A self-powered sandwich-structured scaffold with dual-electroactive properties to regenerate damaged intervertebral discs after discectomy.

作者信息

Wang Jing, Huang Leizhen, Guo Tao, Liu Zheng, Xu Huilun, Yang Hao, Liu Limin, Feng Ganjun, Zhang Li

机构信息

Analytical Testing Center, Department of Orthopedic Surgery and Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu 610065, China.

Department of Orthopedic Surgery, Guizhou Provincial People's Hospital, Guiyang 550002, China.

出版信息

J Mater Chem B. 2025 May 7;13(18):5389-5402. doi: 10.1039/d5tb00100e.

Abstract

Discectomy is the most commonly used surgery in treating herniation-induced nerve compression, but it often destroys the structural integrity and leaves a defect in the intervertebral disc (IVD), leading to re-herniation risk. Considering that electric signals play a crucial role in tissue regeneration, a dual-electroactive scaffold was fabricated to promote the repair effect of the discectomy-left IVD defect. An electroconductive scaffold (G10) was 3D-printed firstly by doping graphene to form electro-osmotic networks in a polycaprolactone (PCL) matrix, then tetragonal barium titanate (T-BT) doped polyvinylidene fluoride (PVDF) fibrous membranes (B5) with piezoelectricity were electrospun on both the upper and lower surfaces of G10 to obtain a sandwich-structured scaffold (G10B5) with both piezoelectric and electroconductive activities. The experimental results confirmed that the dual-electroactive G10B5 scaffold could well mimic the electroconductive properties of natural IVDs and harvest ambient mechanical energy to produce electrical stimuli, thus recruiting surrounding stem cells. Following implantation in defective IVDs of rats, the dual-electroactive scaffolds could effectively decrease the loss of cells and extracellular matrix (ECM) and maintain the composite cartilage structure of IVDs. The dual-electroactive scaffold with a sandwich structure is proposed here to provide a novel strategy for treating the IVD defects after discectomy and broaden the application of electroactive biomaterials in tissue regeneration.

摘要

椎间盘切除术是治疗椎间盘突出引起的神经压迫最常用的手术,但它常常破坏结构完整性,在椎间盘(IVD)中留下缺陷,导致再次突出的风险。考虑到电信号在组织再生中起关键作用,制备了一种双电活性支架以促进椎间盘切除术后IVD缺损的修复效果。首先通过掺杂石墨烯在聚己内酯(PCL)基质中形成电渗网络来3D打印导电支架(G10),然后在G10的上下表面静电纺丝掺杂四方钛酸钡(T-BT)的具有压电性的聚偏二氟乙烯(PVDF)纤维膜(B5),以获得具有压电和导电活性的三明治结构支架(G10B5)。实验结果证实,双电活性G10B5支架能够很好地模拟天然IVD的导电特性,并收集周围的机械能以产生电刺激,从而募集周围的干细胞。在植入大鼠的有缺陷IVD后,双电活性支架可以有效减少细胞和细胞外基质(ECM)的损失,并维持IVD的复合软骨结构。本文提出的具有三明治结构的双电活性支架为治疗椎间盘切除术后的IVD缺损提供了一种新策略,并拓宽了电活性生物材料在组织再生中的应用。

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