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Selective comparison of gelling agents as neural cell culture matrices for long-term microelectrode array electrophysiology

机译:胶凝剂作为神经细胞培养基质用于长期微电极阵列电生理学的选择性比较

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In classic monolayer cell culture, the world is flat. In contrast, tissue-embedded cells experience a three-dimensional context to interact with. We assessed a selection of natural gelling agents of non-animal origin (iιi/- and iκi/-carrageenan, gellan gum, guar gum, locust bean gum, sodium alginate, tragacanth and xanthan gum) in serum-free medium at 1–4% (w/v) concentration for their suitability as a more natural 3D culture environment for brain-derived cells. Their biophysical properties (viscosity, texture, transparency, gelling propensity) resemble those of the extracellular matrix (ECM). Gels provide the neurons with a 3D scaffold to interact with and allow for an increase of the overall cell density compared to classical monolayer 2D culture. They not only protect neurons in cell culture from shear forces and medium evaporation, but stabilize the microenvironment around them for efficient glial proliferation, tissue-analog neural differentiation and neural communication. We report on their properties (viscosity, transparency), their ease of handling in a cell culture context and their possible use modalities (cell embedment, as a cell cover or as a cell culture substrate). Among the selected gels, guar gum and locust bean gum with intercalated laminin allowed for cortical cell embedment. Neurons plated on and migrating into gellan gum survived and differentiated even without the addition of laminin. Sodium alginate with laminin was a suitable cell cover. Finally, we exemplarily demonstrate how guar gum supported the functional survival of a cortical culture over a period of 79 days in a proof-of-concept long-term microelectrode array (MEA) electrophysiology study.
机译:在经典的单层细胞培养中,世界是平坦的。相反,组织包埋的细胞经历了与之互动的三维环境。我们评估了非动物来源的天然胶凝剂的选择(ι-和κ-角叉菜胶,结冷胶,瓜尔豆胶,刺槐豆胶,藻酸钠,黄aga胶和黄原胶)在1-4%(w / v)浓度的无血清培养基中,因为它们适用于脑源性细胞的更天然3D培养环境。它们的生物物理特性(粘度,质地,透明度,胶凝倾向)类似于细胞外基质(ECM)。与经典的单层2D培养相比,凝胶为神经元提供了一个3D支架,可与之相互作用并允许总体细胞密度增加。它们不仅保护细胞培养中的神经元免受剪切力和培养基蒸发,而且稳定它们周围的微环境,以实现有效的神经胶质增生,组织类似神经分化和神经沟通。我们报告了它们的特性(粘度,透明度),它们在细胞培养环境中的易处理性及其可能的使用方式(细胞嵌入,作为细胞覆盖物或作为细胞培养底物)。在选定的凝胶中,瓜尔豆胶和刺槐豆胶与层状层粘连蛋白可插入皮质细胞。即使不添加层粘连蛋白,铺在结冷胶上并迁移到结冷胶中的神经元也能存活并分化。海藻酸钠和层粘连蛋白是合适的细胞覆盖物。最后,我们在概念验证的长期微电极阵列(MEA)电生理研究中示范性地证明了瓜耳胶如何支持皮质培养物在79天内的功能存活。

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