首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Frequency-Dependence of Mechanically Stimulated Osteoblastic Calcification in Tissue-Engineered Bone In Vitro
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Frequency-Dependence of Mechanically Stimulated Osteoblastic Calcification in Tissue-Engineered Bone In Vitro

机译:机械刺激的组织工程骨体外成骨细胞钙化的频率依赖性

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The effect of mechanical stimulation on osteogen-esis remains controversial, especially with respect to the loading frequency that maximizes osteogenesis. Mechanical stimulation at an optimized frequency may be beneficial for the bone tissue regeneration to promote osteoblastic calcification. The objective of this study was to investigate the frequency-dependent effect of mechanical loading on osteoblastic calcification in the tissue-engineered bones in vitro. Tissue-engineered bones were constructed by seeding rat osteoblasts into a type I collagen sponge scaffold at a cell density of 1600 or 24,000 cells/mm3. Sinusoidal compressive deformation at the peak of 0.2% was applied to the tissue-engineered bones at 0.2, 2, 10, 20, 40, and 60 Hz for 3 min/ day for 14 consecutive days. Optically-monitored calcium content started to increase on days 5-7 and reached the highest value at 2 Hz on day 14; however, no increase was observed at 0.2 Hz and in the control. Ash content measured after the mechanical stimulation also showed the highest at 2 Hz despite the differences in cell seeding density. It was concluded that mechanical stimulation at 2 Hz showed the highest promotional effect for osteogenesis in vitro among the frequencies selected in this study.
机译:机械刺激对成骨作用的影响仍然存在争议,特别是在使成骨作用最大化的负荷频率方面。以最佳频率进行机械刺激可能有益于骨组织再生以促进成骨细胞钙化。这项研究的目的是研究组织工程化骨骼中机械负荷对成骨细胞钙化的频率依赖性影响。通过将大鼠成骨细胞以1600或24,000个细胞/ mm3的细胞密度播种到I型胶原海绵支架中来构建组织工程化的骨骼。在0.2%,2、10、20、40和60 Hz的频率下,将峰值为0.2%的正弦压缩变形应用于组织工程骨骼,连续3天/天,持续3分钟/天。光学监测的钙含量在第5-7天开始增加,并在第14天达到2 Hz的最高值。然而,在0.2Hz和对照中没有观察到增加。尽管细胞接种密度不同,但机械刺激后测得的灰分含量在2 Hz时也最高。结论是,在本研究中选择的频率中,在2 Hz的机械刺激对体外成骨作用显示出最高的促进作用。

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