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使用两种不同尺寸的球形压头时关节软骨对滑动载荷的响应1

Articular cartilage response to a sliding load using two different-sized spherical indenters1.

作者信息

Schätti Oliver R, Colombo Vera, Torzilli Peter A, Gallo Luigi M

机构信息

Laboratory for Soft Tissue Research, Hospital for Special Surgery, Street, New York, NY, USA.

Laboratory of Physiology and Biomechanics of the Masticatory System, Center for Oral Medicine, Dental and Maxillo-Facial Surgery, University of Zurich, Switzerland.

出版信息

Biorheology. 2018;54(2-4):109-126. doi: 10.3233/BIR-16110.

Abstract

BACKGROUND

Cartilage surface contact geometry influences the deformational behavior and stress distribution throughout the extracellular matrix (ECM) under load.

OBJECTIVE

To test the correlation between the mechanical and cellular response of articular cartilage when loaded with two different-sized spherical indenters under dynamic reciprocating sliding motion.

METHODS

Articular cartilage explants were subjected to a reciprocating sliding load using a 17.6 mm or 30.2 mm spherical ball for 2000 cycles at 10 mm/s and 4 kg axial load. Deformation of the cartilage was recorded and contact parameters were calculated according to Hertzian theory. After mechanical loading cartilage samples were collected and analyzed for ECM collagen damage, gene regulation and proteoglycan (PG) loss.

RESULTS

Significantly higher ECM deformation and strain and lower dynamic effective modulus were found for explants loaded with the smaller diameter indenter whereas contact radius and stress remained unaffected. Also, the 17.6 mm indenter increased PG loss and significantly upregulated genes for ECM proteins and enzymes as compared to the 30.2 mm indenter.

CONCLUSION

Sliding loads that increase ECM deformation/strain were found to induce enzyme-mediated catabolic processes in articular cartilage explants. These observations provide further understanding of how changes in cartilage contact mechanics under dynamic conditions can affect the cellular response.

摘要

背景

软骨表面接触几何形状会影响负载下整个细胞外基质(ECM)的变形行为和应力分布。

目的

测试在动态往复滑动运动下,用两种不同尺寸的球形压头加载时关节软骨的力学反应与细胞反应之间的相关性。

方法

使用17.6毫米或30.2毫米的球形球对关节软骨外植体施加往复滑动负载,以10毫米/秒的速度和4千克的轴向负载进行2000次循环。记录软骨的变形情况,并根据赫兹理论计算接触参数。机械加载后,收集软骨样本并分析细胞外基质胶原蛋白损伤、基因调控和蛋白聚糖(PG)损失情况。

结果

与直径较大的压头相比,使用较小直径压头加载的外植体出现了显著更高的细胞外基质变形和应变以及更低的动态有效模量,而接触半径和应力不受影响。此外,与30.2毫米的压头相比,17.6毫米的压头导致蛋白聚糖损失增加,细胞外基质蛋白和酶的基因显著上调。

结论

发现增加细胞外基质变形/应变的滑动负载会在关节软骨外植体中诱导酶介导的分解代谢过程。这些观察结果进一步说明了动态条件下软骨接触力学的变化如何影响细胞反应。

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