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交流电对神经干细胞活力和分化的影响。

Alternating current electric field effects on neural stem cell viability and differentiation.

机构信息

Polymers Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

Biotechnol Prog. 2010 May-Jun;26(3):664-70. doi: 10.1002/btpr.389.

Abstract

Methods utilizing stem cells hold tremendous promise for tissue engineering applications; however, many issues must be worked out before these therapies can be routinely applied. Utilization of external cues for preimplantation expansion and differentiation offers a potentially viable approach to the use of stem cells in tissue engineering. The studies reported here focus on the response of murine neural stem cells encapsulated in alginate hydrogel beads to alternating current electric fields. Cell viability and differentiation was studied as a function of electric field magnitude and frequency. We applied fields of frequency (0.1-10) Hz, and found a marked peak in neural stem cell viability under oscillatory electric fields with a frequency of 1 Hz. We also found an enhanced propensity for astrocyte differentiation over neuronal differentiation in the 1 Hz cultures, as compared to the other field frequencies we studied.

摘要

方法利用干细胞在组织工程应用中具有巨大的潜力;然而,在这些治疗方法可以常规应用之前,必须解决许多问题。利用外部线索进行植入前的扩增和分化为干细胞在组织工程中的应用提供了一种潜在可行的方法。本研究报告集中于包封在藻酸盐水凝胶珠中的鼠神经干细胞对交流电场的反应。研究了电场强度和频率对细胞活力和分化的影响。我们施加频率为(0.1-10) Hz 的电场,发现振荡电场在 1 Hz 时神经干细胞活力明显增加。与我们研究的其他场频相比,我们还发现 1 Hz 培养物中星形胶质细胞分化的倾向增强,而神经元分化的倾向减弱。

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