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Neuronal-glial populations form functional networks in a biocompatible 3D scaffold

机译:神经胶质细胞群体在生物相容性3D支架中形成功能网络

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Monolayers of neurons and glia have been employed for decades as tools for the study of cellular physiology and as the basis for a variety of standard toxicological assays. A variety of three dimensional (3D) culture techniques have been developed with the aim to produce cultures that recapitulate desirable features of intact. In this study, we investigated the effect of preparing primary mouse mixed neuron and glial cultures in the inert 3D scaffold, Alvetex. Using planar multielectrode arrays, we compared the spontaneous bioelectrical activity exhibited by neuroglial networks grown in the scaffold with that seen in the same cells prepared as conventional monolayer cultures. Two dimensional (monolayer; 2D) cultures exhibited a significantly higher spike firing rate than that seen in 3D cultures although no difference was seen in total signal power (<50 Hz) while pharmacological responsiveness of each culture type to antagonism of GABA(A)R, NMDAR and AMPAR was highly comparable. Interestingly, correlation of burst events, spike firing and total signal power (<50 Hz) revealed that local field potential events were associated with action potential driven bursts as was the case for 2D cultures. Moreover, glial morphology was more physiologically normal in 3D cultures. These results show that 3D culture in inert scaffolds represents a more physiologically normal preparation which has advantages for physiological, pharmacological, toxicological and drug development studies, particularly given the extensive use of such preparations in high throughput and high content systems. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:数十年来,神经元和神经胶质细胞的单分子层已被用作研究细胞生理学的工具,并作为各种标准毒理学测定的基础。已经开发了多种三维(3D)培养技术,目的是产生概括完整的所需特征的培养物。在这项研究中,我们调查了在惰性3D支架Alvetex中制备原代小鼠混合神经元和神经胶质培养物的效果。使用平面多电极阵列,我们比较了在支架中生长的神经胶质网络所表现出的自发生物电活性与在与常规单层培养物制备的相同细胞中所看到的相比。二维(单层; 2D)培养物显示出比3D培养物中明显更高的加标激发率,尽管总信号功率(<50 Hz)没有差异,而每种培养物类型对GABA(A)R的拮抗药理反应,NMDAR和AMPAR具有高度可比性。有趣的是,爆发事件,尖峰发射和总信号功率(<50 Hz)之间的相关性揭示了局部场电位事件与动作电位驱动的爆发相关,就像2D培养的情况一样。此外,在3D文化中,胶质细胞形态在生理上更为正常。这些结果表明,惰性支架中的3D培养代表了生理上更正常的制剂,对于生理,药理,毒理学和药物开发研究具有优势,特别是考虑到此类制剂在高通量和高含量系统中的广泛使用。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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