首页> 外文期刊>The spine journal: official journal of the North American Spine Society >Role of biomechanics in intervertebral disc degeneration and regenerative therapies: What needs repairing in the disc and what are promising biomaterials for its repair?
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Role of biomechanics in intervertebral disc degeneration and regenerative therapies: What needs repairing in the disc and what are promising biomaterials for its repair?

机译:生物力学在椎间盘退变和再生疗法中的作用:哪些需要在椎间盘中进行修复?哪些有希望的生物材料对其进行修复?

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Background context: Degeneration and injuries of the intervertebral disc (IVD) result in large alterations in biomechanical behaviors. Repair strategies using biomaterials can be optimized based on the biomechanical and biological requirements of the IVD. Purpose: To review the present literature on the effects of degeneration, simulated degeneration, and injury on biomechanics of the IVD, with special attention paid to needle puncture injuries, which are a pathway for diagnostics and regenerative therapies and the promising biomaterials for disc repair with a focus on how those biomaterials may promote biomechanical repair. Study design: A narrative review to evaluate the role of biomechanics on disc degeneration and regenerative therapies with a focus on what biomechanical properties need to be repaired and how to evaluate and accomplish such repairs using biomaterials. Model systems for the screening of such repair strategies are also briefly described. Methods: Articles were selected from two main PubMed searches using keywords: intervertebral AND biomechanics (1,823 articles) and intervertebral AND biomaterials (361 articles). Additional keywords (injury, needle puncture, nucleus pressurization, biomaterials, hydrogel, sealant, tissue engineering) were used to narrow the articles down to the topics most relevant to this review. Results: Degeneration and acute disc injuries have the capacity to influence nucleus pulposus (NP) pressurization and annulus fibrosus (AF) integrity, which are necessary for an effective disc function and, therefore, require repair. Needle injection injuries are of particular clinical relevance with the potential to influence disc biomechanics, cellularity, and metabolism, yet these effects are localized or small and more research is required to evaluate and reduce the potential clinical morbidity using such techniques. NP replacement strategies, such as hydrogels, are required to restore the NP pressurization or the lost volume. AF repair strategies including cross-linked hydrogels, fibrous composites, and sealants offer promise for regenerative therapies to restore AF integrity. Tissue engineered IVD structures, as a single implantable construct, may promote greater tissue integration due to the improved repair capacity of the vertebral bone. Conclusions: IVD height, neutral zone characteristics, and torsional biomechanics are sensitive to specific alterations in the NP pressurization and AF integrity and must be addressed for an effective functional repair. Synthetic and natural biomaterials offer promise for NP replacement, AF repair, as an AF sealant, or whole disc replacement. Meeting mechanical and biological compatibilities are necessary for the efficacy and longevity of the repair.
机译:背景技术:椎间盘(IVD)的变性和损伤导致生物力学行为发生重大变化。可以基于IVD的生物力学和生物学要求来优化使用生物材料的修复策略。目的:回顾有关变性,模拟变性和损伤对IVD生物力学的影响的现有文献,尤其要注意针穿刺损伤,这是诊断和再生疗法的途径,也是用于修复椎间盘的有前途的生物材料。重点关注这些生物材料如何促进生物力学修复。研究设计:叙述性评论,评估生物力学在椎间盘退变和再生疗法中的作用,重点在于需要修复哪些生物力学特性以及如何使用生物材料评估和完成此类修复。还简要描述了用于筛选此类修复策略的模型系统。方法:从两个主要的PubMed搜索中使用关键词来选择文章:椎间和生物力学(1,823条)和椎间和生物材料(361条)。使用其他关键字(伤害,针刺,核加压,生物材料,水凝胶,密封剂,组织工程)将文章缩小到与该评论最相关的主题。结果:变性和急性椎间盘损伤有能力影响髓核(NP)加压和纤维环(AF)完整性,这对于有效的椎间盘功能是必需的,因此需要修复。针头注射损伤与可能影响椎间盘生物力学,细胞结构和新陈代谢具有特殊的临床意义,但是这些作用是局部的或很小的,需要更多的研究来评估和减少使用此类技术的潜在临床发病率。需要NP替代策略,例如水凝胶,以恢复NP加压或损失的体积。 AF修复策略包括交联的水凝胶,纤维复合材料和密封剂,为再生疗法恢复AF的完整性提供了希望。组织工程化的IVD结构作为单个可植入结构,由于椎骨的修复能力增强,可能促进更大的组织整合。结论:IVD高度,中性区特征和扭转生物力学对NP加压和AF完整性的特定变化敏感,必须进行有效的功能修复。合成和天然生物材料为NP替代,AF修复,作为AF密封剂或整个椎间盘置换提供了希望。要使修复的有效性和寿命长久,必须满足机械和生物相容性。

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