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Mechanical Restoration and Failure Analyses of a Hydrogel and Scaffold Composite Strategy for Annulus Fibrosus Repair

机译:水凝胶和支架复合策略修复纤维环的机械修复和失效分析

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摘要

Unrepaired defects in the annulus fibrosus of intervertebral discs are associated with degeneration and persistent back pain. A clinical need exists for a disc repair strategy that can seal annular defects, be easily delivered during surgical procedures, and restore biomechanics with low risk of herniation. Multiple annulus repair strategies were developed using poly(trimethylene carbonate) scaffolds optimized for cell delivery, polyurethane membranes designed to prevent herniation, and fibrin-genipin adhesive tuned to annulus fibrosus shear properties. This three-part study evaluated repair strategies for biomechanical restoration, herniation risk and failure mode in torsion, bending and compression at physiological and hyper-physiological loads using a bovine injury model. Fibrin-genipin hydrogel restored some torsional stiffness, bending ROM and disc height loss, with negligible herniation risk and failure was observed histologically at the fibrin-genipin mid-substance following rigorous loading. Scaffold-based repairs partially restored biomechanics, but had high herniation risk even when stabilized with sutured membranes and failure was observed histologically at the interface between scaffold and fibrin-genipin adhesive. Fibrin-genipin was the simplest annulus fibrosus repair solution evaluated that involved an easily deliverable adhesive that filled irregularly-shaped annular defects and partially restored disc biomechanics with low herniation risk, suggesting further evaluation for disc repair may be warranted.
机译:椎间盘纤维环的未修复缺损与变性和持续性背痛有关。临床上需要一种椎间盘修复策略,该策略可密封环形缺损,在外科手术过程中轻松交付并恢复具有低疝风险的生物力学。使用优化用于细胞递送的聚碳酸三亚甲基酯支架,设计用于防止疝气的聚氨酯膜和调整至纤维环剪切特性的纤维蛋白-Genipin粘合剂,开发了多种纤维环修复策略。这项由三部分组成的研究使用牛损伤模型评估了生理和超生理负荷下生物力学恢复,疝风险和扭转,弯曲和压迫失败模式的修复策略。血纤蛋白-Genipin水凝胶恢复了一定的扭转刚度,弯曲的ROM和椎间盘高度损失,其椎间盘突出症的风险可忽略不计,并且在严格加载后在组织学上在血纤蛋白-Genipin中部观察到失败。基于支架的修复可部分恢复生物力学,但即使用缝合的膜稳定,也有较高的疝风险,并且在组织和纤维蛋白-Genipin粘合剂之间的界面上通过组织学观察到失败。纤维蛋白-Genipin是经评估的最简单的纤维环修复解决方案,其涉及易于释放的粘合剂,该粘合剂可填充不规则形状的环形缺损并部分恢复椎间盘生物力学,具有较低的椎间盘突出风险,提示可能需要对椎间盘修复进行进一步评估。

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