Zhao Runze, Liu Wanqian, Xia Tingting, Yang Li
Key Laboratory of Biorheological Science and Technology, Ministry of Education, Bioengineering College, Chongqing University, Chongqing 400044, China.
Polymers (Basel). 2019 Jul 5;11(7):1151. doi: 10.3390/polym11071151.
Low back pain (LBP), commonly induced by intervertebral disc degeneration, is a lumbar disease with worldwide prevalence. However, the mechanism of degeneration remains unclear. The intervertebral disc is a nonvascular organ consisting of three components: Nucleus pulposus, annulus fibrosus, and endplate cartilages. The disc is structured to support our body motion and endure persistent external mechanical pressure. Thus, there is a close connection between force and intervertebral discs in LBP. It is well established that with aging, disordered mechanical stress profoundly influences the fate of nucleus pulposus and the alignment of collagen fibers in the annulus fibrosus. These support a new understanding that disordered mechanical stress plays an important role in the degeneration of the intervertebral discs. Tissue-engineered regenerative and reparative therapies are being developed for relieving disc degeneration and symptoms of lower back pain. In this paper, we will review the current literature available on the role of disordered mechanical stress in intervertebral disc degeneration, and evaluate the existing tissue engineering treatment strategies of the current therapies.
下腰痛(LBP)通常由椎间盘退变引起,是一种在全球范围内普遍存在的腰椎疾病。然而,退变的机制仍不清楚。椎间盘是一个无血管的器官,由三个部分组成:髓核、纤维环和终板软骨。椎间盘的结构旨在支持身体运动并承受持续的外部机械压力。因此,在LBP中,力与椎间盘之间存在密切联系。众所周知,随着年龄的增长,紊乱的机械应力会深刻影响髓核的命运以及纤维环中胶原纤维的排列。这些支持了一种新的认识,即紊乱的机械应力在椎间盘退变中起重要作用。正在开发组织工程再生和修复疗法以缓解椎间盘退变和下腰痛症状。在本文中,我们将综述当前关于紊乱机械应力在椎间盘退变中作用的文献,并评估当前疗法中现有的组织工程治疗策略。