首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >The three-dimensional architecture of the notochordal nucleus pulposus: novel observations on cell structures in the canine intervertebral disc
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The three-dimensional architecture of the notochordal nucleus pulposus: novel observations on cell structures in the canine intervertebral disc

机译:脊索髓核的三维结构:犬椎间盘细胞结构的新观察

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摘要

Cells from the nucleus pulposus of young (< 2 years) and old (> 5 years) non-chondrodystrophoid dogs were studied using routine histology, confocal laser scanning microscopy and transmission electron microscopy. The architecture of cell structures – from the tissue scale down to subcellular scale – was reported. Clusters of notochordal cells were observed in young nuclei pulposi, ranging from 10 to 426 cells each. These clusters resisted mechanical disruption and showed evidence of cell–cell signalling via gap junctions. Cells (30–40 µm in diameter) within the clusters had a physaliferous appearance, containing numerous large inclusions which ranged from 1 to 20 µm in diameter. The inclusions were surrounded by a dense actin cortex but were not contained by a lipid bilayer. The contents of the inclusions were determined not to be predominantly carbohydrate or neutral lipid as assessed by histochemical staining, but the exact composition of the contents remained uncertain. There were striking differences in the cell architecture of young vs. old nuclei pulposi, with a loss of both cell clusters and physaliferous cells during ageing. These observations demonstrate unique cell structures, which may influence our understanding of the differences between notochordal and chondrocytic cells in the nucleus pulposus. Such differences could have substantial impact upon how we think about development, degeneration and repair of the intervertebral disc.
机译:使用常规组织学,共聚焦激光扫描显微镜和透射电子显微镜研究了幼年(<2岁)和年老(> 5岁)非软骨肌营养不良犬髓核的细胞。报告了细胞结构的结构-从组织尺度到亚细胞尺度-。在年轻的髓核中观察到了脊索细胞簇,每个簇的细胞数为10至426个。这些簇抵抗机械破坏,并显示出通过间隙连接的细胞间信号传递的证据。簇内的细胞(直径为30–40 µm)具有磷化外观,包含许多大的内含物,直径范围为1至20 µm。内含物被致密的肌动蛋白皮层包围,但脂质双层不包含。通过组织化学染色确定,夹杂物的含量主要不是碳水化合物或中性脂质,但是含量的确切组成仍然不确定。年轻的和老的髓核的细胞结构存在显着差异,在衰老过程中细胞簇和植酸细胞均丢失。这些观察结果表明独特的细胞结构,这可能会影响我们对髓核中脊索细胞和软骨细胞之间差异的理解。这种差异可能会对我们对椎间盘发育,退化和修复的看法产生重大影响。

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