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Effects of uniaxial cyclic stretch loading on morphology of adipose derived stem cells

机译:单轴循环拉伸载荷对脂肪干细胞形态的影响

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摘要

Adipose derived stem cells (ADSC) are good candidates for the replacement of bone marrow derived mesenchymal stem cells due to their abundance, multipotency property, and easier accessibility. In order to explore the behavior of these cells in response to mechanical stimulation, in this study we have investigated the effects of uniaxial dynamic mechanical loading on ADSC’s morphology. Stem cells derived from the fat tissue of human and after an overnight culture were seeded on a silicone rubber strips. Afterwards, cells were subjected to a uniaxial dynamic loading in three different groups. Cell images were evaluated considering different morphological parameters. Fractal dimension decreased significantly after loading while in control groups there were a significant increase (p<0.05), approving that cyclic strain would lead to more aligned and organized cells. Cell orientation also increased significantly (p<0.05). Moreover cells’ orientation angle, 24 hour after loading does not change compared to the observations immediately after loading, which attests to the practicality of the cyclic strain in functional tissue engineering. Cell width decreased and cell length increased which led to a significant increase in cell shape index (p<0.05). Results confirmed that uniaxial dynamic loading affects cell morphological parameters comparing their values before and after loading. In addition, the number of cycles are also an important factor since different number of cycles lead to different amounts of certain morphological parameters. Conclusively, cyclic strain can be a practical method in the field of functional tissue engineering.
机译:脂肪来源的干细胞(ADSC)是骨髓来源的间充质干细胞的替代品,因为它们的丰度,多能性和更容易获得,因此是很好的候选者。为了研究这些细胞对机械刺激的反应行为,在这项研究中,我们研究了单轴动态机械载荷对ADSC形态的影响。将源自人类脂肪组织的过夜培养后的干细胞接种在硅橡胶条上。之后,将细胞分为三个不同的组进行单轴动态加载。考虑到不同的形态学参数评估细胞图像。加载后,分形维数显着下降,而对照组中,分形维数显着增加(p <0.05),这证明循环应变将导致细胞排列和组织更有序。细胞取向也显着增加(p <0.05)。此外,加载后24小时的细胞定向角与加载后立即的观察相比没有变化,这证明了循环应变在功能组织工程中的实用性。细胞宽度减少,细胞长度增加,导致细胞形状指数显着增加(p <0.05)。结果证实,单轴动态加载通过比较加载前后的值影响细胞形态学参数。另外,循环数也是重要的因素,因为不同的循环数导致不同量的某些形态学参数。最后,循环应变可以是功能组织工程领域中的一种实用方法。

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