首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Hydromechanical stimulator for chondrocyte-seeded constructs in articular cartilage tissue engineering applications
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Hydromechanical stimulator for chondrocyte-seeded constructs in articular cartilage tissue engineering applications

机译:用于关节软骨组织工程应用中的软骨细胞播种结构的液压机械刺激器

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摘要

Mechanical stimulation is a key technique used for controlling the mechanical properties of tissue engineered articular cartilage constructs proposed for defect repair. The present study introduces a new technical method and device for 'hydromechanical' stimulation of tissue engineered articular cartilage constructs. The stimulation consists of simultaneous cyclic compression, frictional shear from a sliding indenter contact and direct pressurized fluid perfusion. Each of these modes of mechanical loading has been shown by other research groups to effectively stimulate tissue engineered constructs. A device for applying these conditions was designed, developed and tested. Two sets (high and low perfusion flow rates) of three experiments were performed, each with two samples subjected to hydromechanical stimulation conditions (compression and friction forces along with perfusion). Two other samples from each set were subjected to just compression and dynamic frictional shear forces, and two more were used as controls (not stimulated). The average amount of glycosaminoglycan retained in the constructs after 3 weeks ranked from low to high as follows: controls, hydromechanical conditions with the low-flow rate, hydromechanical conditions with the high-flow rate and just compression plus dynamic frictional shear. Statistically significant differences were not detected. However, future studies would focus on glycosaminoglycan production in the superficial zone, measuring the glycosaminoglycan released to the nutrient media, and address altering the hydromechanical stimulation parameters using the results of the present study as guidance, in attempts to achieve statistically significant increases in glycosaminoglycan production compared with the controls.
机译:机械刺激是用于控制提出用于缺损修复的组织工程关节软骨构造的机械性能的关键技术。本研究介绍了一种新的技术方法和设备,以“水力”刺激组织工程化的软骨构造。刺激包括同时循环压缩,滑动压头接触产生的摩擦剪切和直接加压流体灌注。其他研究小组已显示出每种机械负载模式均可有效刺激组织工程构造。设计,开发和测试了适用于这些条件的设备。进行了两组(高和低灌注流速)三个实验,每组两个样品都受到了流体力学刺激条件(压缩和摩擦力以及灌注)的影响。每组的另外两个样品仅受到压缩力和动摩擦剪切力的作用,另外两个样品用作对照(未刺激)。 3周后保留在构建体中的糖胺聚糖的平均量从低到高排列如下:对照,低流速的水力机械条件,高流速的水力机械条件以及仅压缩加动态摩擦剪切。未检测到统计学上的显着差异。然而,未来的研究将集中在表层糖胺聚糖的产生,测量释放到营养介质中的糖胺聚糖,并以本研究的结果为指导,解决改变水力机械刺激参数的问题,以试图实现糖胺聚糖产量的统计显着增加。与控件相比。

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