Joint Department of Biomedical Engineering at the University of North Carolina at Chapel Hill and North Carolina State University, Raleigh, North Carolina, USA.
Tissue Eng Part C Methods. 2010 Dec;16(6):1377-86. doi: 10.1089/ten.TEC.2009.0751. Epub 2010 May 10.
Electric stimulation is known to initiate signaling pathways and provides a technique to enhance osteogenic differentiation of stem and/or progenitor cells. There are a variety of in vitro stimulation devices to apply electric fields to such cells. Herein, we describe and highlight the use of interdigitated electrodes to characterize signaling pathways and the effect of electric fields on the proliferation and osteogenic differentiation of human adipose-derived stem cells (hASCs). The advantage of the interdigitated electrode configuration is that cells can be easily imaged during short-term (acute) stimulation, and this identical configuration can be utilized for long-term (chronic) studies. Acute exposure of hASCs to alternating current (AC) sinusoidal electric fields of 1 Hz induced a dose-dependent increase in cytoplasmic calcium in response to electric field magnitude, as observed by fluorescence microscopy. hASCs that were chronically exposed to AC electric field treatment of 1 V/cm (4 h/day for 14 days, cultured in the osteogenic differentiation medium containing dexamethasone, ascorbic acid, and β-glycerol phosphate) displayed a significant increase in mineral deposition relative to unstimulated controls. This is the first study to evaluate the effects of sinusoidal AC electric fields on hASCs and to demonstrate that acute and chronic electric field exposure can significantly increase intracellular calcium signaling and the deposition of accreted calcium under osteogenic stimulation, respectively.
电刺激已知能启动信号通路,并提供一种增强干细胞和/或祖细胞成骨分化的技术。有各种各样的体外刺激设备可将电场应用于此类细胞。在此,我们描述并强调使用交错电极来表征信号通路以及电场对人脂肪来源干细胞(hASC)增殖和成骨分化的影响。交错电极构型的优点是可以在短期(急性)刺激期间轻松对细胞进行成像,并且可以将相同的构型用于长期(慢性)研究。通过荧光显微镜观察到,hASC 对 1 Hz 的交流电正弦电场的急性暴露会导致细胞内钙随电场强度呈剂量依赖性增加。与未刺激对照相比,慢性暴露于 1 V/cm 的交流电电场处理(14 天内每天 4 小时,在含有地塞米松、抗坏血酸和 β-甘油磷酸的成骨分化培养基中培养)的 hASC 显示出矿化沉积的显著增加。这是第一项评估正弦交流电电场对 hASC 的影响的研究,并证明急性和慢性电场暴露可分别显著增加成骨刺激下的细胞内钙信号和积累钙的沉积。