Tissue and Organ Mechanobiology, Institute for Surgical Technology and Biomechanics, Stauffacherstrasse 78, 3014 Bern,
Eur Cell Mater. 2017 Oct 24;34:271-290. doi: 10.22203/eCM.v034a17.
The degeneration of the intervertebral disc (IVD) within the spinal column represents a major pain source for many patients. Biological restoration or repair of the IVD using "compressive-force-resistant" and at the same time "cytocompatible" materials would be desirable over current purely mechanical solutions, such as spinal fusion or IVD implants. This review provides an overview of recent research on the repair of the inner (nucleus pulposus = NP) and the outer (annulus fibrous = AF) parts of the IVD tissue. Many studies have addressed NP repair using hydrogel-like materials. However, only a few studies have so far focused on AF repair. As the AF possesses an extremely low self-healing capacity and special attention to shear-force resistance is essential, special repair designs are required. In our review, we stated the challenges in IVD repair and highlighted the use of composite materials such as silk biomaterials and fibrin cross-linked reinforced hydrogels. We elaborated on the origin of silk and its many in tissue engineering. Furthermore, techniques such as electrospinning and 3D printing technologies allow the fabrication of versatile and functionalised 3D scaffolds. We summarised the research that has been conducted in the field of regenerative medicine over the recent years, with a special focus on the potential application and the potential of combining silk and reinforced - and thus mechanically tailored - hydrogels for IVD repair.
脊柱内的椎间盘(IVD)退变是许多患者的主要疼痛源。与目前单纯的机械解决方案(如脊柱融合或 IVD 植入物)相比,使用“抗压”且同时“细胞相容”的材料对 IVD 进行生物修复或再生将是理想的。本综述概述了最近关于 IVD 组织内(核髓 = NP)和外(纤维环 = AF)部分修复的研究。许多研究都使用水凝胶样材料来解决 NP 修复问题。然而,到目前为止,只有少数研究关注 AF 修复。由于 AF 具有极低的自我修复能力,因此特别需要注意抗剪切力,因此需要特殊的修复设计。在我们的综述中,我们阐述了 IVD 修复的挑战,并强调了使用复合材料(如丝生物材料和纤维蛋白交联增强水凝胶)的重要性。我们详细介绍了丝的起源及其在组织工程中的多种应用。此外,静电纺丝和 3D 打印技术等技术允许制造多功能和功能化的 3D 支架。我们总结了近年来再生医学领域的研究,特别关注丝和增强(从而机械定制)水凝胶在 IVD 修复中的潜在应用和潜力。