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Permeability and shear modulus of articular cartilage in growing mice

机译:生长中小鼠关节软骨的渗透性和剪切模量

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摘要

Articular cartilage maturation is the postnatal development process that adapts joint surfaces to their site-specific biomechanical demands. Understanding the changes in mechanical tissues properties during growth is a critical step in advancing strategies for orthopedics and for cell- and biomaterial- based therapies dedicated to cartilage repair. We hypothesize that at the microscale, the articular cartilage tissue properties of the mouse (i.e., shear modulus and permeability) change with the growth and are dependent on location within the joint. We tested cartilage on the medial femoral condyle and lateral femoral condyle of seven C57Bl6 mice at different ages (2, 3, 5, 7, 9, 12, and 17 weeks old) using a micro-indentation test. Results indicated that permeability decreased with age from 2 to 17 weeks. Shear modulus reached a peak at the end of the growth (9 weeks). Within an age group, shear modulus was higher in the MFC than in the LFC, but permeability did not change. We have developed a method that can measure natural alterations in cartilage material properties in a murine joint, which will be useful in identifying changes in cartilage mechanics with degeneration, pathology, or treatment.
机译:关节软骨的成熟是产后发育过程,可以使关节表面适应其特定部位的生物力学要求。理解骨生长过程中机械组织特性的变化是推进骨科以及专门针对软骨修复的基于细胞和生物材料的治疗策略的关键步骤。我们假设在微观尺度上,小鼠的关节软骨组织特性(即剪切模量和通透性)随生长而变化,并且取决于关节内的位置。我们使用微压痕试验测试了七只C57Bl6小鼠在不同年龄(2、3、5、7、9、12和17周龄)的内侧股骨and和外侧股骨con上的软骨。结果表明,随着年龄的增长,通透性从2周降低到17周。剪切模量在生长结束时(9周)达到峰值。在一个年龄组内,MFC中的剪切模量高于LFC中的剪切模量,但渗透率没有变化。我们已经开发出一种方法,该方法可以测量鼠类关节软骨材料性质的自然变化,这将有助于识别伴随退化,病理或治疗而引起的软骨力学变化。

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