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通过外部压迫装置建立的腰椎间盘退变模型,用于研究骨终板的微循环变化。

A lumbar disc degeneration model established through an external compressive device for the study of microcirculation changes in bony endplates.

作者信息

Guo Ji, Yan Hao, Xie Yue, Zhai Weifeng, Yang Shengqi, Zhang Yafeng, Xu Weimin, Jia Yongwei

机构信息

Guanghua Hospital Affiliated to Shanghai University of Traditional Chinese Medicine, Shanghai 200052, China.

Shanghai Guanghua Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai 200052, China.

出版信息

Heliyon. 2023 Apr 19;9(5):e15633. doi: 10.1016/j.heliyon.2023.e15633. eCollection 2023 May.

Abstract

OBJECTIVE

To establish a new animal model of intervertebral disc degeneration (IDD) by axial compression on lumbar spine of rabbits and to investigate the changes of microcirculation in bony endplates during the progress of IDD.

METHODS

32 New Zealand white rabbits were equally divided into 4 groups as follows: Control group with no operation and compression, Sham operation group with apparatus placement only, 2-week compression group and 4-week compression group with the devices installed and compressed for their preset duration. All groups of rabbits underwent MRI, histological evaluation, disc height index measurement and Microfil contrast agent perfusions to examine the ratio of endplate microvascular channels.

RESULTS

The new animal model of IDD was successfully established after axial compression for 4 weeks. The MRI grades for the 4-week compression group was 4.63 ± 0.52 and significantly different to the sham operation group (P < 0.05). Histologically, decrease of normal NP cells and extracellular matrix and disorganization of the architecture of the annulus fibrosus apparently occurred in 4-week compression group, which was different to the sham operation group (P < 0.05). There was no statistically difference between the 2-week compression and sham operation group no matter in the histology and MRI assessment. The disc height index slowly decreased as the compression duration rose. The ratio of microvascular channel volume within the bony endplate in 2-week and 4-week compression group were both reduced whereas the 4-week compression group obtained significantly less vascularization volume (6.34 ± 1.52 vs. 19.52 ± 4.63, P < 0.05).

CONCLUSION

A new model of lumbar IDD was successfully established by axial compression and the volume of microvascular channels in the bony endplate gradually decreased as the grade of IDD increased. This model provides a new choice for etiological studies on IDD and investigation of nutrient supply disturbance.

摘要

目的

通过对兔腰椎进行轴向压缩建立一种新的椎间盘退变(IDD)动物模型,并研究IDD进展过程中骨终板微循环的变化。

方法

将32只新西兰白兔平均分为4组:未手术及未压缩的对照组、仅放置装置的假手术组、安装装置并压缩2周的2周压缩组和安装装置并压缩4周的4周压缩组。所有组的兔子均接受磁共振成像(MRI)、组织学评估、椎间盘高度指数测量以及微丝造影剂灌注以检查终板微血管通道比例。

结果

轴向压缩4周后成功建立了新的IDD动物模型。4周压缩组的MRI分级为4.63±0.52,与假手术组有显著差异(P<0.05)。组织学上,4周压缩组明显出现正常髓核细胞和细胞外基质减少以及纤维环结构紊乱,与假手术组不同(P<0.05)。2周压缩组与假手术组在组织学和MRI评估方面均无统计学差异。随着压缩时间延长,椎间盘高度指数缓慢下降。2周和4周压缩组骨终板内微血管通道体积比例均降低,而4周压缩组的血管化体积明显减少(6.34±1.52对19.52±4.63,P<0.05)。

结论

通过轴向压缩成功建立了一种新的腰椎IDD模型,且随着IDD分级增加,骨终板微血管通道体积逐渐减少。该模型为IDD病因学研究及营养供应障碍研究提供了新的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a834/10149222/5d5656a66936/gr1.jpg

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