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关节软骨中胶原纤维的三维“编织”结构。

The three-dimensional 'knit' of collagen fibrils in articular cartilage.

作者信息

Broom N D, Silyn-Roberts H

机构信息

Department of Mechanical Engineering, University of Auckland, Private Bag, New Zealand.

出版信息

Connect Tissue Res. 1989;23(4):261-77. doi: 10.3109/03008208909005626.

Abstract

TEM stereoscopy of thick sections has been used to reconstruct the 3-dimensional relationships of collagen fibrils in the general matrix of articular cartilage in its relaxed and deformed states. As well as identifying a variety of fibril interactions involving direct physical entwinement which are assumed to provide matrix cohesion the study also highlights the functional importance of the repeatedly kinked morphology exhibited by the radial fibrils. It is suggested that these fibril kinks, in accommodating local compressive strains that approach 100%, function as macro-molecular hinges and permit the collagen elements to undergo large spatial rearrangement without risk to their structural integrity.

摘要

透射电子显微镜对厚切片进行体视学分析,已用于重建关节软骨一般基质中胶原纤维在松弛和变形状态下的三维关系。该研究不仅确定了多种涉及直接物理缠绕的纤维相互作用(这些相互作用被认为可提供基质内聚力),还强调了放射状纤维呈现的反复扭结形态的功能重要性。有人提出,这些纤维扭结在适应接近100%的局部压缩应变时,起到大分子铰链的作用,使胶原成分能够进行大的空间重排,而不会危及它们的结构完整性。

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