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β-肾上腺素能途径通过旋转细胞培养系统增强人神经干细胞中的线粒体功能。

β-adrenoceptor pathway enhances mitochondrial function in human neural stem cells via rotary cell culture system.

机构信息

Department of Life Science, Fu Jen Catholic University, New Taipei City 242, Taiwan.

出版信息

J Neurosci Methods. 2012 Jun 15;207(2):130-6. doi: 10.1016/j.jneumeth.2012.04.005. Epub 2012 Apr 13.

DOI:10.1016/j.jneumeth.2012.04.005
PMID:22524992
Abstract

The structure and function of the human nervous system are altered in space when compared with their state on earth. To investigate directly the influence of simulated microgravity conditions which may be beneficial for cultivation and proliferation of human neural stem cells (hNSCs), the rotary cell culture system (RCCS) developed at the National Aeronautics and Space Administration (NASA) was used. RCCS allows the creation of a unique microgravity environment of low shear force, high-mass transfer and enables three-dimensional (3D) cell culture of dissimilar cell types. The results show that simulated microgravity using an RCCS would induce β-adrenoceptor, upregulate cAMP formation and activate both PKA and CREB (cAMP response element binding protein) pathways. The expression of intracellular mitochondrial genes, including PGC1α (PPAR coactivator 1α), nuclear respiratory factors 1 and 2 (NRF1 and NRF2) and mitochondrial transcription factor A (Tfam), regulated by CREB, were all significantly increased at 72 h after the onset of microgravity. Accordingly and importantly, the ATP level and amount of mitochondrial mass were also increased. These results suggest that exposure to simulated microgravity using an RCCS would induce cellular proliferation in hNSCs via an increased mitochondrial function. In addition, the RCCS bioreactor would support hNSCs growth, which may have the potential for cell replacement therapy in neurological disorders.

摘要

与地球上的状态相比,人类神经系统的结构和功能在太空中会发生改变。为了直接研究模拟微重力条件对人类神经干细胞(hNSC)培养和增殖可能有益的影响,美国国家航空航天局(NASA)开发的旋转细胞培养系统(RCCS)被用于该研究。RCCS 允许创建一个独特的微重力环境,具有低剪切力、高传质能力,并能够对不同类型的细胞进行三维(3D)培养。结果表明,使用 RCCS 的模拟微重力会诱导β-肾上腺素能受体,上调 cAMP 的形成,并激活蛋白激酶 A(PKA)和 cAMP 反应元件结合蛋白(CREB)途径。在微重力开始后的 72 小时内,受 CREB 调节的细胞内线粒体基因的表达,包括过氧化物酶体增殖物激活受体共激活因子 1α(PGC1α)、核呼吸因子 1 和 2(NRF1 和 NRF2)以及线粒体转录因子 A(Tfam),均显著增加。相应地,重要的是,线粒体的 ATP 水平和质量也增加了。这些结果表明,使用 RCCS 暴露于模拟微重力会通过增加线粒体功能来诱导 hNSC 的细胞增殖。此外,RCCS 生物反应器将支持 hNSC 的生长,这可能在神经紊乱的细胞替代疗法中有潜力。

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