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Investigation of the Effect of Mechanical Strain on the Osteogenic Differentiation of Mesenchymal Stem Cells

机译:机械菌株对间充质干细胞成骨分化作用的研究

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The engineering of functional bone constructs ex vivo is a rapidly growing branch in the field of tissue engineering. Bone constructs generally comprise cells and a scaffold providing a supportive framework for the cells to grow as well as mechanical stability. Furthermore, mechanical stimulation has become a substantial tool in functional tissue engineering.Mesenchymal stem cells are a widely used cell source in tissue engineering and regenerative medicine. In this work, the applicability of adipose tissue derived mesenchymal stem cells (adMSCs) for bone tissue engineering has been investigated using different scaffold materials with regard to viability and osteogenic differentiation. Since mechanical strain is known to enhance osteogenic differentiation, adMSCs were subjected to a cyclic strain with the fixed parameters of 5% elongation and the frequency of 1 Hz. Strain schemes of 15 min, 60 min and 2 h as well as repeated strain were applied and cell viability as well as bone marker expression were investigated. Moreover, a flexible microelectrode culture dish for electric cell-substrate impedance sensing (ECIS) was developed in order to determine morphological changes of cells due to the applied load.
机译:exvivo功能骨构建体的工程是组织工程领域的快速生长分支。骨构造通常包括细胞和支架,该支架为细胞提供支撑框架以生长和机械稳定性。此外,机械刺激已成为功能组织工程中的实质性工具。心性干细胞是组织工程和再生医学中广泛使用的细胞来源。在这项工作中,研究了脂肪组织衍生的间充质干细胞(ADMSCs)用于骨组织工程的使用不同的支架材料,在活力和成骨分化方面已经研究。由于已知机械菌株来增强成骨分化,因此将ADMSCS进行循环菌株,固定参数为5%伸长率和1 Hz的频率。施用15分钟,60分钟和2小时,并施加60分钟和2小时,并研究了细胞活力以及骨标记表达。此外,开发了一种用于电池 - 基板阻抗感应(ECIS)的柔性微电极培养皿,以便由于施加的载荷确定细胞的形态变化。

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