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Designing electrical stimulated bioreactors for nerve tissue engineering

机译:设计电气刺激的神经组织工程生物反应器

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Bioreactor provides a biomimetic ecosystem that is able to culture cells in a physically controlled system. In general, the controlled-parameters are temperature, pH, fluid flow, nutrition flow, etc. In this study, we develop a bioreactor that specifically targeted to culture neural stem cells. This bioreactor could overcome some limitations of conventional culture technology, such as petri dish, by providing specific range of observation area and a uniform treatment. Moreover, the microfluidic bioreactor, which is a small-controlled environment, is able to observe as small number of cells as possible. A perfusion flow is applied to mimic the physiological environment in human body. Additionally, this bioreactor also provides an electrical stimulation which is needed by neural stem cells. In conclusion, we found the correlation between the induced shear stress with geometric parameters of the bioreactor. Ultimately, this system shall be used to observe the interaction between stimulation and cell growth.
机译:生物反应器提供了一种能够在物理控制系统中培养细胞的生物菊类生态系统。通常,受控参数是温度,pH,流体流动,营养流等。在本研究中,我们开发了一种专门针对培养神经干细胞的生物反应器。通过提供特定的观察区域和均匀的处理,这种生物反应器可以克服传统培养技术的一些局限性,例如培养皿,例如培养皿。此外,作为一个小于控制的环境的微流体生物反应器能够观察到尽可能少量的细胞。施用灌注流以模拟人体的生理环境。另外,该生物反应器还提供了神经干细胞所需的电刺激。总之,我们发现诱导剪切应力与生物反应器的几何参数之间的相关性。最终,该系统应用于观察刺激和细胞生长之间的相互作用。

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