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退变人椎间盘纤维环细胞中包涵体的超微结构

Ultrastructure of inclusion bodies in annulus cells in the degenerating human intervertebral disc.

作者信息

Gruber H E, Hanley E N

机构信息

Department of Orthopaedic Surgery, Orthopaedic Research Biology, Carolinas Medical Center, Charlotte, NC 28232, USA.

出版信息

Biotech Histochem. 2009 Jun;84(3):85-94. doi: 10.1080/10520290902857835. Epub 2009 Apr 16.

Abstract

The rough endoplasmic reticulum (rER) of the cell has an architectural editing function that checks whether protein structure and three-dimensional assembly have occurred properly prior to export of newly synthesized material out of the cell. If these have been faulty, the material is retained within the rER as an inclusion body. Inclusion bodies have been identified previously in chondrocytes and osteoblasts in chondrodysplasias and osteogenesis imperfecta. Inclusion bodies in intervertebral disc cells, however, have only recently been recognized. Our objectives were to use transmission electron microscopy to analyze more fully inclusion bodies in the annulus pulposus and to study the extracellular matrix (ECM) surrounding cells containing inclusion bodies. ECM frequently encapsulated cells with inclusion bodies, and commonly contained prominent banded aggregates of Type VI collagen. Inclusion body material had several morphologies, including relatively smooth, homogeneous material, or a rougher, less homogeneous feature. Such findings expand our knowledge of the fine structure of the human disc cell and ECM during disc degeneration, and indicate the potential utility of ultrastructural identification of discs with intracellular inclusion bodies as a screening method for molecular studies directed toward identification of defective gene products in degenerating discs.

摘要

细胞的粗面内质网(rER)具有一种结构编辑功能,可在新合成的物质输出细胞之前,检查蛋白质结构和三维组装是否正确发生。如果出现错误,该物质会作为包涵体保留在rER内。此前已在软骨发育不全和成骨不全的软骨细胞和成骨细胞中发现了包涵体。然而,椎间盘细胞中的包涵体直到最近才被认识到。我们的目标是使用透射电子显微镜更全面地分析髓核中的包涵体,并研究含有包涵体的细胞周围的细胞外基质(ECM)。ECM经常包裹着含有包涵体的细胞,并且通常含有明显的VI型胶原带状聚集体。包涵体物质有几种形态,包括相对光滑、均匀的物质,或更粗糙、不太均匀的特征。这些发现扩展了我们对椎间盘退变过程中人类椎间盘细胞和ECM精细结构的认识,并表明将具有细胞内包涵体的椎间盘进行超微结构鉴定作为一种筛选方法,用于针对退变椎间盘中缺陷基因产物鉴定的分子研究具有潜在用途。

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