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3D 特征化研究:在衰老过程中椎间盘和终板形态变化的传播:相位对比同步辐射微断层扫描研究。

3D characterization of morphological changes in the intervertebral disc and endplate during aging: A propagation phase contrast synchrotron micro-tomography study.

机构信息

Department of Spine Surgery, Xiangya Hospital, Central South University, Changsha, 410008, China.

School of Information Science and Engineering, Central South University, Changsha, Changsha, 410008, China.

出版信息

Sci Rep. 2017 Mar 7;7:43094. doi: 10.1038/srep43094.

Abstract

A better understanding of functional changes in the intervertebral disc (IVD) and interaction with endplate is essential to elucidate the pathogenesis of IVD degeneration disease (IDDD). To date, the simultaneous depiction of 3D micro-architectural changes of endplate with aging and interaction with IVD remains a technical challenge. We aim to characterize the 3D morphology changes of endplate and IVD during aging using PPCST. The lumbar vertebral level 4/5 IVDs harvested from 15-day-, 4- and 24-month-old mice were initially evaluated by PPCST with histological sections subsequently analyzed to confirm the imaging efficiency. Quantitative assessments of age-related trends after aging, including mean diameter, volume fraction and connectivity of the canals, and endplate porosity and thickness, reached a peak at 4 months and significantly decreased at 24 months. The IVD volume consistently exhibited same trend of variation with the endplate after aging. In this study, PPCST simultaneously provided comprehensive details of 3D morphological changes of the IVD and canal network in the endplate and the interaction after aging. The results suggest that PPCST has the potential to provide a new platform for attaining a deeper insight into the pathogenesis of IDDD, providing potential therapeutic targets.

摘要

更好地了解椎间盘(IVD)的功能变化及其与终板的相互作用,对于阐明椎间盘退行性疾病(IDDD)的发病机制至关重要。迄今为止,同时描述终板的 3D 微观结构变化及其随年龄增长与 IVD 的相互作用仍然是一项技术挑战。我们旨在使用 PPCST 来描述终板和 IVD 在老化过程中的 3D 形态变化。使用 PPCST 初步评估了从小鼠第 15 天、4 个月和 24 个月时获得的腰椎 4/5 椎间盘,并随后通过组织学切片进行分析以确认成像效率。对老化后与年龄相关的趋势进行了定量评估,包括管腔的平均直径、体积分数和连通性,以及终板的孔隙率和厚度,在 4 个月时达到峰值,在 24 个月时显著下降。在老化后,IVD 体积与终板的变化趋势相同。在这项研究中,PPCST 同时提供了 IVD 和终板内管网的 3D 形态变化及其老化后相互作用的全面详细信息。研究结果表明,PPCST 有可能为深入了解 IDDD 的发病机制提供新的平台,为潜在的治疗靶点提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/031b/5339826/9e41a9ec361f/srep43094-f1.jpg

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