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组织化学确定了牛屈肌腱在弯曲时富含蛋白聚糖的一层。

Histochemistry defines a proteoglycan-rich layer in bovine flexor tendon subjected to bending.

作者信息

Vogel K G, Peters J A

机构信息

Department of Biology, The University of New Mexico, Albuquerque, NM 87131, USA.

出版信息

J Musculoskelet Neuronal Interact. 2005 Mar;5(1):64-9.

Abstract

Mid-substance fibrocartilage develops in bovine deep flexor tendon at the point where the tendon wraps under sesamoid bones of the foot and receives transverse compressive loading during locomotion. Fibrocartilage extends several millimeters into the tendon at this location and the proteoglycan-rich tissue stains intensely with Alcian blue. Using histochemical techniques we demonstrate the presence of aggrecan, type VI collagen, and hyaluronic acid in the extracellular matrix of this region of tendon. Biglycan staining was localized to the cells, however. Adjacent to the fibrocartilage, at the outer curvature of the tendon as it bends, the tissue resembles typical tensile tendon with dense bundles of linearly arranged collagen. Longitudinal sections revealed discrete layers of Alcian blue-stained material between the collagen bundles. We demonstrate that these layers of loose matrix also contain aggrecan, type VI collagen, and hyaluronic acid. However, the dense collagen bundles of this region are negative for these components. Transverse sections of tendon in the area adjacent to fibrocartilage show a distinct Alcian blue-stained structure surrounding vascular elements at the point where several fiber bundles come together. This is concluded to be the same structure as the Alcian blue-stained layers seen in longitudinal sections. These observations suggest that proteoglycan-rich matrices in tendon subjected to mechanical loading other than pure tension may serve multiple roles. Such matrices can not only provide compressive stiffness and separate and lubricate collagen bundles that move relative to each other, but may also protect the integrity of vasculature in tendon subjected to bending and shear.

摘要

在牛的趾深屈肌腱中,当肌腱在足部籽骨下方环绕并在运动过程中承受横向压缩负荷时,会形成中间物质纤维软骨。纤维软骨在该位置延伸至肌腱内数毫米,富含蛋白聚糖的组织用阿尔新蓝染色时颜色很深。我们利用组织化学技术证明,在该区域肌腱的细胞外基质中存在聚集蛋白聚糖、VI型胶原蛋白和透明质酸。然而,双糖链蛋白聚糖染色定位于细胞。在纤维软骨相邻处,即肌腱弯曲处的外曲率处,组织类似于典型的抗张肌腱,有密集的线性排列的胶原束。纵切面显示胶原束之间有离散的阿尔新蓝染色物质层。我们证明这些疏松基质层也含有聚集蛋白聚糖、VI型胶原蛋白和透明质酸。然而,该区域密集的胶原束对这些成分呈阴性。在与纤维软骨相邻区域的肌腱横切面显示,在几个纤维束汇合处,围绕血管成分有一个明显的阿尔新蓝染色结构。据推断,这与纵切面中看到的阿尔新蓝染色层是相同的结构。这些观察结果表明,除了单纯张力外,承受机械负荷的肌腱中富含蛋白聚糖的基质可能具有多种作用。这样的基质不仅可以提供抗压刚度,分离并润滑相对移动的胶原束,还可能保护承受弯曲和剪切力的肌腱中血管的完整性。

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