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糖胺聚糖对牛关节软骨压缩平衡模量的静电和非静电贡献。

Electrostatic and non-electrostatic contributions of proteoglycans to the compressive equilibrium modulus of bovine articular cartilage.

机构信息

Department of Biomedical Engineering, Columbia University, New York, NY 10027, USA.

出版信息

J Biomech. 2010 May 7;43(7):1343-50. doi: 10.1016/j.jbiomech.2010.01.021. Epub 2010 Feb 26.

Abstract

This study presents direct experimental evidence for assessing the electrostatic and non-electrostatic contributions of proteoglycans to the compressive equilibrium modulus of bovine articular cartilage. Immature and mature bovine cartilage samples were tested in unconfined compression and their depth-dependent equilibrium compressive modulus was determined using strain measurements with digital image correlation analysis. The electrostatic contribution was assessed by testing samples in isotonic and hypertonic saline; the combined contribution was assessed by testing untreated and proteoglycan-depleted samples. Though it is well recognized that proteoglycans contribute significantly to the compressive stiffness of cartilage, results demonstrate that the combined electrostatic and non-electrostatic contributions may add up to more than 98% of the modulus, a magnitude not previously appreciated. Of this contribution, about two thirds arises from electrostatic effects. The compressive modulus of the proteoglycan-depleted cartilage matrix may be as low as 3kPa, representing less than 2% of the normal tissue modulus; experimental evidence also confirms that the collagen matrix in digested cartilage may buckle under compressive strains, resulting in crimping patterns. Thus, it is reasonable to model the collagen as a fibrillar matrix that can sustain only tension. This study also demonstrates that residual stresses in cartilage do not arise exclusively from proteoglycans, since cartilage remains curled relative to its in situ geometry even after proteoglycan depletion. These increased insights on the structure-function relationships of cartilage can lead to improved constitutive models and a better understanding of the response of cartilage to physiological loading conditions.

摘要

本研究提供了直接的实验证据,用于评估糖胺聚糖对牛关节软骨压缩平衡模量的静电和非静电贡献。在无约束压缩下测试了未成熟和成熟的牛软骨样本,并使用数字图像相关分析进行应变测量来确定其深度相关的平衡压缩模量。通过在等渗和高渗盐水中测试样本来评估静电贡献;通过测试未经处理和糖胺聚糖耗尽的样本来评估组合贡献。尽管人们普遍认识到糖胺聚糖对软骨的压缩刚度有很大贡献,但结果表明,静电和非静电贡献的总和可能超过模量的 98%,这一数值以前并未得到重视。在这一贡献中,大约三分之二来自静电效应。糖胺聚糖耗尽的软骨基质的压缩模量可能低至 3kPa,仅为正常组织模量的 2%左右;实验证据还证实,在消化的软骨中,胶原基质在压缩应变下可能会弯曲,导致起皱模式。因此,将胶原模型化为仅能承受张力的纤维状基质是合理的。本研究还表明,软骨中的残余应力并非仅来自糖胺聚糖,因为即使在耗尽糖胺聚糖后,软骨相对于其原位几何形状仍然卷曲。这些对软骨结构-功能关系的深入了解可以导致改进的本构模型和更好地理解软骨对生理加载条件的响应。

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