首页> 美国卫生研究院文献>Tissue Engineering and Regenerative Medicine >The Effects of Epigallocatechin-3-Gallate and Mechanical Stimulation on Osteogenic Differentiation of Human Mesenchymal Stem Cells: Individual or Synergistic Effects
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The Effects of Epigallocatechin-3-Gallate and Mechanical Stimulation on Osteogenic Differentiation of Human Mesenchymal Stem Cells: Individual or Synergistic Effects

机译:表没食子儿茶素-3-没食子酸酯和机械刺激对人间充质干细胞成骨分化的影响:个体或协同作用。

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摘要

This study aims to investigate the roles and effects of EGCG (epigallocatechin-3-gallate) during the osteogenic differentiation of human mesenchymal stem cells (hMSCs) in vitro. Recent studies have shown that proper mechanical stimuli can induce osteogenic differentiation of hMSCs apart from biochemical factors. In this study, the hMSC cultures were subjected to: (1) 25 uM EGCG alone or (2) 3% mechanical stretching (0.2 Hz for 4 h/day for 4 days) or (3) in combination with 3% mechanical stretching (0.2 Hz for 4 h/day for 4 days). The two factors were applied to the cell cultures separately and in combination to investigate the individual and synergistic effect of both mechanical stimulation and ECGC in the osteogenic differentiation of hMSCs. Utilizing real time PCR, we measured various osteogenic markers and even those related to intracellular signalings. Further investigation of mitochondria was performed that mitochondria biogenesis, antioxidant capacity, and morphological related markers were measured. hMSCs were to be osteogenic or myogenic differentiated when they were under 3% stretching only. However, when EGCG was applied along with stretching they were to be osteogenic differentiated rather than to be myogenic differentiated. This was supported by evaluating intracellular signalings: BMP-2 and VEGF. Therefore, the synergistical effects of simultaneous employment of stretching and EGCG on osteogenic differentiation were confirmed. Moreover, simultaneous employment was found positive in mitochondria biogenesis, antioxidant capacity, and morphological changes. Through this study, we came into the conclusion that the combination of proper mechanical stretching, 3% in this study, and EGCG promote osteogenic differentiation. Reflecting that EGCG can be obtained from plants not from the chemical syntheses, it is worth to be studied further either by animal tests or long-term experiments for clinical applications.
机译:这项研究旨在研究EGCG(epigallocatechin-3-gallate)在人间充质干细胞(hMSCs)体外成骨分化中的作用和影响。最近的研究表明,除了生化因素外,适当的机械刺激还可以诱导hMSC的成骨分化。在这项研究中,对hMSC培养物进行以下测试:(1)单独使用25 uM EGCG或(2)3%机械拉伸(0.2 Hz,4h /天,连续4天)或(3)结合3%机械拉伸( 0.2 Hz,持续4小时/天,持续4天)。将这两个因素分别或组合应用于细胞培养,以研究机械刺激和ECGC在hMSCs成骨分化中的个体作用和协同作用。利用实时PCR,我们测量了各种成骨标记,甚至与细胞内信号转导相关的标记。对线粒体进行了进一步的研究,测定了线粒体的生物发生,抗氧化能力和形态相关标记。仅在3%拉伸以下时,hMSC才具有成骨性或成肌性分化。然而,当EGCG与拉伸一起应用时,它们将是成骨分化的而不是成肌分化的。这通过评估细胞内信号转导来支持:BMP-2和VEGF。因此,证实了同时使用拉伸和EGCG对成骨分化的协同作用。此外,发现同时就业对线粒体的生物发生,抗氧化能力和形态变化有积极作用。通过这项研究,我们得出的结论是,适当的机械拉伸(本研究中的3%)和EGCG的结合可促进成骨分化。反映出EGCG可以从植物中获得而不是从化学合成中获得,值得通过动物试验或长期临床试验来进一步研究。

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