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老年胶原蛋白IX基因敲除小鼠中,椎骨形态、骨矿物质密度和基质组成的早期变化会导致椎间盘退变。

Early changes in morphology, bone mineral density and matrix composition of vertebrae lead to disc degeneration in aged collagen IX -/- mice.

作者信息

Kamper Matthias, Hamann Nina, Prein Carina, Clausen-Schaumann Hauke, Farkas Zsuzsanna, Aszodi Attila, Niehoff Anja, Paulsson Mats, Zaucke Frank

机构信息

Center for Biochemistry, Medical Faculty, University of Cologne, D-50931 Cologne, Germany.

Center for Molecular Medicine Cologne (CMMC), University of Cologne, D-50931 Cologne, Germany; Institute of Biomechanics and Orthopaedics, German Sport University Cologne, Cologne, Germany.

出版信息

Matrix Biol. 2016 Jan;49:132-143. doi: 10.1016/j.matbio.2015.09.005. Epub 2015 Sep 30.

Abstract

Collagen IX (Col IX) is an important component of the cartilage extracellularmatrix and has been associated with degenerative cartilage disorders and chondrodysplasias in humans. Further, polymorphisms in Col IX are known risk factors for the development of early intervertebral disc (IVD) degeneration. To understand the role of Col IX in the pathogenesis of IVD disorders, the spine of newborn and older Col IX deficient mice was systematically analyzed and compared to C57BL/6N controls. Morphology and bone parameters of the spine from newborn, 6 and 10 months old animals were investigated using μCT measurements. Histological staining was used to evaluate tissue structure and degree of degeneration. Localization and expression of extracellularmatrix proteins was analyzed in depth by immunofluorescence staining, immunoblotting, RT-PCR and in situ hybridization. High resolution imaging and stiffness measurements were performed by atomic force microscopy (AFM). Vertebral bodies of newborn Col IX-deficient mice were smaller and showed an increased mineral density compared to wild type animals. At birth, lack of Col IX led to a disrupted cellular organization in the cartilaginous endplate and a smaller nucleus pulposus of the IVD.Expression levels and localization of other extracellularmatrix proteins were strongly altered accompanied by a softening of cartilaginous tissues. In older animals, absence of Col IX caused earlier and more pronounced disc degeneration with annular fissures. The absence of Col IX induces early developmental, structural and biomechanical alterations in both vertebral body and intervertebral disc which eventually cause severe degenerative changes in the aging spine.

摘要

IX型胶原蛋白(Col IX)是软骨细胞外基质的重要组成部分,与人类软骨退行性疾病和软骨发育异常有关。此外,Col IX基因多态性是早期椎间盘(IVD)退变发生的已知风险因素。为了解Col IX在IVD疾病发病机制中的作用,对新生和老龄Col IX基因缺陷小鼠的脊柱进行了系统分析,并与C57BL/6N对照小鼠进行比较。使用μCT测量法研究了新生、6个月和10个月大动物脊柱的形态和骨参数。采用组织学染色评估组织结构和退变程度。通过免疫荧光染色、免疫印迹、RT-PCR和原位杂交深入分析细胞外基质蛋白的定位和表达。通过原子力显微镜(AFM)进行高分辨率成像和硬度测量。与野生型动物相比,新生Col IX基因缺陷小鼠的椎体较小,矿物质密度增加。出生时,Col IX的缺乏导致软骨终板细胞组织紊乱和IVD髓核较小。其他细胞外基质蛋白的表达水平和定位发生强烈改变,同时软骨组织软化。在老龄动物中,Col IX的缺失导致更早且更明显的椎间盘退变并伴有环状裂隙。Col IX的缺失在椎体和椎间盘中诱导早期发育、结构和生物力学改变,最终导致衰老脊柱出现严重的退行性变化。

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