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Matrix Remodeling During Intervertebral Disc Growth and Degeneration Detected by Multichromatic FAST Staining

机译:多色FAST染色检测椎间盘生长和变性过程中的基质重塑

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摘要

Various imaging techniques have been used to assess degeneration of the intervertebral disc, including many histological methods, but cartilage-oriented histological stains do not clearly show the comparatively complex structures of the disc. In addition, there is no integrated method to assess efficiently both the compartmental organization and matrix composition in disc samples. In this study, a novel histological method, termed FAST staining, has been developed to investigate disc growth and degeneration by sequential staining with fast green, Alcian blue, Safranin-O, and tartrazine to generate multichromatic histological profiles (FAST profiles). This identifies the major compartments of the vertebra-disc region, including the cartilaginous endplate and multiple zones of the annulus fibrosus, by specific FAST profile patterns. A disc degeneration model in rabbit established using a previously described puncture method showed gradual but profound alteration of the FAST profile during disc degeneration, supporting continual alteration of glycosaminoglycan. Changes of the FAST profile pattern in the nucleus pulposus and annulus fibrosus of the postnatal mouse spine suggested matrix remodeling activity during the growth of intervertebral discs. In summary, we developed an effective staining method capable of defining intervertebral disc compartments in detail and showing matrix remodeling events within the disc. The FAST staining method may be used to develop a histopathological grading system to evaluate disc degeneration or malformation. >(J Histochem Cytochem 57:249–256, 2009)
机译:各种成像技术已被用于评估椎间盘退变,包括许多组织学方法,但是软骨定向的组织学染色不能清楚地显示椎间盘的相对复杂的结构。此外,还没有集成的方法可以有效地评估椎间盘样本中的区室组织和基质组成。在这项研究中,已开发出一种称为FAST染色的新型组织学方法,以通过对快干绿色,Alcian蓝,Safranin-O和tartrazine进行顺序染色来研究椎间盘的生长和变性,以产生多色组织学特征(FAST特征)。通过特定的FAST轮廓图样,可以识别出椎间盘区域的主要隔室,包括软骨终板和纤维环的多个区域。使用先前描述的穿刺方法建立的兔椎间盘退变模型显示,椎间盘退变期间FAST曲线逐渐但深刻地改变,支持糖胺聚糖的持续改变。产后小鼠脊柱髓核和纤维环中FAST轮廓模式的变化提示椎间盘生长过程中的基质重塑活性。总之,我们开发了一种有效的染色方法,能够详细定义椎间盘间隔并显示椎间盘内的基质重塑事件。 FAST染色方法可用于开发组织病理学分级系统,以评估椎间盘退变或畸形。 >(J Histochem Cytochem 57:249–256,2009)

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