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矿化肌腱中的结构-力学关系。

Structure-mechanics relationships in mineralized tendons.

作者信息

Spiesz Ewa M, Zysset Philippe K

机构信息

School of Engineering and Materials Science, Queen Mary University of London, Mile End Road, London E1 4NS, United Kingdom.

Institute for Surgical Technology & Biomechanics, University of Bern, Stauffacherstrasse 78, CH-3014 Bern, Switzerland.

出版信息

J Mech Behav Biomed Mater. 2015 Dec;52:72-84. doi: 10.1016/j.jmbbm.2015.03.013. Epub 2015 Apr 1.

Abstract

In this paper, we review the hierarchical structure and the resulting elastic properties of mineralized tendons as obtained by various multiscale experimental and computational methods spanning from nano- to macroscale. The mechanical properties of mineralized collagen fibres are important to understand the mechanics of hard tissues constituted by complex arrangements of these fibres, like in human lamellar bone. The uniaxial mineralized collagen fibre array naturally occurring in avian tendons is a well studied model tissue for investigating various stages of tissue mineralization and the corresponding elastic properties. Some avian tendons mineralize with maturation, which results in a graded structure containing two zones of distinct morphology, circumferential and interstitial. These zones exhibit different amounts of mineral, collagen, pores and a different mineral distribution between collagen fibrillar and extrafibrillar space that lead to distinct elastic properties. Mineralized tendon cells have two phenotypes: elongated tenocytes placed between fibres in the circumferential zone and cuboidal cells with lower aspect ratios in the interstitial zone. Interestingly some regions of avian tendons seem to be predestined to mineralization, which is exhibited as specific collagen cross-linking patterns as well as distribution of minor tendon constituents (like proteoglycans) and loss of collagen crimp. Results of investigations in naturally mineralizing avian tendons may be useful in understanding the pathological mineralization occurring in some human tendons.

摘要

在本文中,我们回顾了通过从纳米尺度到宏观尺度的各种多尺度实验和计算方法所获得的矿化肌腱的层次结构及其产生的弹性特性。矿化胶原纤维的力学性能对于理解由这些纤维的复杂排列构成的硬组织的力学机制很重要,比如在人类板层骨中。天然存在于禽类肌腱中的单轴矿化胶原纤维阵列是一种经过充分研究的模型组织,用于研究组织矿化的各个阶段以及相应的弹性特性。一些禽类肌腱会随着成熟而矿化,这会形成一种分级结构,包含两个形态不同的区域,即周向区和间隙区。这些区域呈现出不同数量的矿物质、胶原蛋白、孔隙,以及在胶原纤维和纤维外空间之间不同的矿物质分布,从而导致不同的弹性特性。矿化肌腱细胞有两种表型:在周向区位于纤维之间的细长腱细胞,以及在间隙区具有较低纵横比的立方体细胞。有趣的是,禽类肌腱的一些区域似乎注定会发生矿化,这表现为特定的胶原交联模式以及次要肌腱成分(如蛋白聚糖)的分布和胶原卷曲的丧失。对天然矿化禽类肌腱的研究结果可能有助于理解某些人类肌腱中发生的病理性矿化。

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