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USE OF INDENTATION TEST TO DETERMINE THE PROTEOGLYCAN CONTENT OF ARTICULAR CARTILAGE

机译:使用压痕试验以确定关节软骨的蛋白质聚糖含量

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The indentation experiment has been widely used to determine mechanical properties of articular cartilage [e.g., 1-3]. This method does not disrupt the fibrous network of the tissue nor does it require removing the tissue from the underlying bone. The biphasic indentation theory has been successfully used to determine the effect of interstitial fluid flow and pressurization (load support) on the creep and stress-relaxation behaviors of articular cartilage, and to determine its apparent mechanical properties (i.e., the elastic moduli of the extracellular solid matrix and its permeability) However, due to its proteoglycan content, articular cartilage is a charged tissue with a high fixed charge density (FCD), Proteoglycan and collagen contents, water, etc, vary with age or with orthteoarthritis The FCD plays important physicochemical roles in load support and mechano-electrochemial behaviors of the tissue and also regulates chondrocyte biosynthetic activities It is therefore important to develop an effective technique to determine not only the mechanical properties but also the electrochemical property (e.g., FCD) of the tissue, simultaneously and at the same location. The purpose of the current study is to determine, for the first time, both the mechanical properties and FCD of the extracellular matrix using an indentation test.
机译:压痕实验已被广泛用于确定关节软骨的机械性能[例如1-3]。该方法不会破坏组织的纤维网络,也不需要从下面的骨中移除组织。双相压痕理论已成功用于确定间隙流体流动和加压(负载载体)对关节软骨的蠕变和应力松弛行为的影响,并确定其表观机械性能(即细胞外的弹性模量固体基质及其渗透率)然而,由于其蛋白多糖含量,关节软骨是带有高固定电荷密度(FCD),蛋白多糖和胶原含量,水等的带电组织,随着年龄或具有正畸炎而变化,FCD起到重要的物理化学负载支持和机械电化学行为的作用以及调节软骨细胞生物合成活性,因此开发一种有效的技术来确定不仅可以同时和组织的电化学性能(例如,FCD)的有效技术。在同一位置。目前研究的目的是使用压痕试验首次确定细胞外基质的机械性能和FCD。

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