Orthopaedic Institute, Medical College, Soochow University, Suzhou, Jiangsu, China.
Department of Orthopaedic Surgery, The First Affiliated Hospital, Soochow University, Suzhou, Jiangsu, China.
Adv Exp Med Biol. 2018;1078:409-420. doi: 10.1007/978-981-13-0950-2_21.
Degenerative disc degeneration (DDD) is the major cause of low back pain, which seriously affects the life of patients. Current surgical and conservative treatments only relieve the pain temporarily, yet fail to restore the normal biomechanics and functions of healthy spine. Indeed, high recurrence of disc herniation commonly happens after discectomy. Degenerative changes in biomechanical and structural properties of the intervertebral disc (IVD), including fissures in annulus fibrosus (AF) and volume loss of nucleus pulposus (NP), mainly contribute to DDD development. AF plays a critical role in the biomechanical properties of IVD as it structural integrity is essential to confine NP and maintain physiological intradiscal pressure under loading. Maintaining the homeostasis of AF and NP, and thereby IVD, requires regulation of their biomechanics, which is also involved in the onset and subsequent development of AF degeneration. Therefore, it is essential to understand the biomechanical changes of AF during degeneration, which can also provide valuable insights into the repair and regeneration of AF. In this review, we focus on the biomechanical properties of AF tissue associated with its homeostasis and degeneration, and discuss the biomechanical stimulus required for regeneration of AF. We also provide an overview of recent strategies to target and modulate cell mechanics toward AF regeneration.
椎间盘退行性病变(DDD)是导致腰痛的主要原因,严重影响患者的生活。目前的手术和保守治疗只能暂时缓解疼痛,但无法恢复健康脊柱的正常生物力学和功能。事实上,椎间盘切除术后椎间盘突出症常复发。椎间盘生物力学和结构特性的退行性变化,包括纤维环(AF)的裂缝和髓核(NP)的体积损失,主要导致 DDD 的发展。AF 在 IVD 的生物力学特性中起着关键作用,因为其结构完整性对于限制 NP 和在加载下维持生理椎间盘内压是必不可少的。维持 AF 和 NP 的内稳态,从而维持 IVD 的内稳态,需要调节它们的生物力学特性,这也与 AF 退变的发生和随后的发展有关。因此,了解 AF 在退变过程中的生物力学变化对于 AF 的修复和再生也具有重要意义。在这篇综述中,我们重点介绍了与 AF 稳态和退变相关的 AF 组织的生物力学特性,并讨论了 AF 再生所需的生物力学刺激。我们还概述了最近针对 AF 再生的靶向和调节细胞力学的策略。