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机械压力和渗透压对完整及蛋白聚糖缺失的关节软骨胶原纤维结构影响的比较

Comparison of the effects of mechanical and osmotic pressures on the collagen fiber architecture of intact and proteoglycan-depleted articular cartilage.

作者信息

Saar Galit, Shinar Hadassah, Navon Gil

机构信息

School of Chemistry, Tel Aviv University, Ramat Aviv, Tel Aviv, Israel.

出版信息

Eur Biophys J. 2007 Apr;36(4-5):529-38. doi: 10.1007/s00249-006-0098-y. Epub 2006 Sep 22.

Abstract

One of the functions of articular cartilage is to withstand recurrent pressure applied in everyday life. In previous studies, osmotic pressure has been used to mimic the effects of mechanical pressure. In the present study, the response of the collagen network of intact and proteoglycans (PG)-depleted cartilage to mechanical and osmotic pressures is compared. The technique used is one-dimensional (2)H double quantum filtered spectroscopic MRI, which gives information about the degree of order and the density of the collagen fibers at the different locations throughout the intact tissue. For the nonpressurized plugs, the depletion had no effect on these parameters. Major differences were found in the zones near the bone between the effects of the two types of application of pressure for both intact and depleted plugs. While the order is lost in these zones as a result of mechanical load, it is preserved under osmotic pressure. For both intact and PG-depleted plugs under osmotic stress most of the collagen fibers become disordered. Our results indicate that different modes of strain are produced by unidirectional mechanical load and the isotropic osmotic stress. Thus, osmotic stress cannot serve as a model for the effect of load on cartilage in vivo.

摘要

关节软骨的功能之一是承受日常生活中反复施加的压力。在以往的研究中,渗透压已被用于模拟机械压力的作用。在本研究中,比较了完整的和蛋白聚糖(PG)耗尽的软骨的胶原网络对机械压力和渗透压的反应。所使用的技术是一维(2)H双量子滤波光谱磁共振成像,它能提供关于完整组织中不同位置胶原纤维的有序程度和密度的信息。对于未加压的软骨块,耗尽蛋白聚糖对这些参数没有影响。在完整的和耗尽蛋白聚糖的软骨块中,发现两种压力施加方式在靠近骨骼的区域产生了主要差异。虽然由于机械负荷这些区域的有序性丧失,但在渗透压下其得以保留。在渗透压应激下,完整的和耗尽蛋白聚糖的软骨块中的大多数胶原纤维都变得无序。我们的结果表明,单向机械负荷和各向同性渗透压会产生不同的应变模式。因此,渗透压应激不能作为体内负荷对软骨作用的模型。

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