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首页> 外文期刊>The international journal of artificial organs >A stimulation unit for the application of mechanical strain on tissue engineered anulus fibrosus cells: a new system to induce extracellular matrix synthesis by anulus fibrosus cells dependent on cyclic mechanical strain.
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A stimulation unit for the application of mechanical strain on tissue engineered anulus fibrosus cells: a new system to induce extracellular matrix synthesis by anulus fibrosus cells dependent on cyclic mechanical strain.

机译:在组织工程化的纤维环细胞上施加机械应变的刺激单元:一种新的系统,可通过纤维环细胞诱导依赖于循环机械应变的细胞外基质合成。

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摘要

A bioreactor system consisting of a multifunctional stimulation unit and common 6-well culture plate is introduced to activate extracellular matrix synthesis in intervertebral disc cells due to cyclic mechanical strain. The developed stimulation unit is sterilizable and reusable. It is viable for cultivation and mechanical stimulation of cartilage tissue and tissue engineered cell matrix constructs in combination with the common 6-well culture plate. The custom made device allows long-term cultivations in batch- or continuous operation mode. Manual handling and thereby the risk of contamination is reduced. Sampling, changing the medium, and addition of supplements are easily performed from the connected conditioning vessel. This bioreactor system enables stimulation of different samples independently during one run. For the work presented here anulus fibrosus cells from pigs were taken and immobilized in agarose to obtain three-dimensional cell matrix constructs. Over a period of 14 days the constructswere subjected to 10% compression under cyclic mechanical pressure with a frequency of 0.1 Hz. Afterwards the constructs were biochemically examined for hydroxyproline and sulphated glycosaminoglycanes. These proven constituents of extracellular matrix were found to be released depending on the applied compressive strain.
机译:引入由多功能刺激单元和常见的6孔培养板组成的生物反应器系统,以激活由于周期性机械应变而在椎间盘细胞中胞外基质合成。研制的刺激装置可消毒和可重复使用。与常见的6孔培养板结合使用,对软骨组织和组织工程化的细胞基质构建体的培养和机械刺激是可行的。该定制设备允许以分批或连续操作模式进行长期栽培。手动处理,从而降低了污染的风险。从连接的调节容器中轻松进行采样,更换培养基和添加补充剂。这种生物反应器系统能够在一次运行中独立刺激不同的样品。对于此处介绍的工作,采集了猪的纤维环细胞并将其固定在琼脂糖中以获得三维细胞基质构建体。在14天的时间里,将构造物在频率为0.1 Hz的循环机械压力下进行10%的压缩。之后,对所述构建体进行生化检查以检测羟脯氨酸和硫酸化的糖胺基聚糖。发现这些细胞外基质的证明成分根据所施加的压缩应变而释放。

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