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THREE DIMENSIONAL CO-CULTURE OF NEURON AND ASTROCYTE IN A MICRO-FLUIDIC DEVICE

机译:微流体装置中神经元和星形胶质细胞的三维共培养

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In this paper, we describe a microfluidic platform that enables three dimensional cell culture within defined micro-environments towards a study of axon-glia interaction. The microdevice can offer both 3D axon isolation from cell body and 3D spatial cell separation between neuron and astrocyte. It consists of large fluidic channels for media supply and small channels for collagen filling as a three dimensional ECM (extracellular matrix). Astrocytes were seeded in collagen gel through small fluidic channels and neuron cells were aggregated at an openings of small channel to large channels. This method separated neuronal soma from axon as well as segregatedneuron body from astrocyte. The preliminary study on the effect of astrocyte to the axon growth showed that axon growth was faster and richer in co-culture condition without growth factor.This 3D co-culture chip can provide a new method to observe the effect of astrocyte on the axon growth in three dimensional culture system.
机译:在本文中,我们描述了一种微流体平台,其使三维细胞培养能够在确定的微环境中能够朝着轴突 - 胶林相互作用的研究。 Microdevice可以从细胞体和神经元和星形胶质细胞之间提供3D轴突隔离和3D空间细胞分离。它由大型流体通道组成用于介质供应和用于胶原蛋白作为三维ECM(细胞外基质)的胶原蛋白的小通道。通过小流体通道在胶原凝胶中播种星形胶质细胞,并且在小通道的开口处聚集神经元细胞在大通道上聚集。该方法将神经元躯体从轴突中分离出神经元SOMA,以及来自星形胶质细胞的Segregatedneuron体。星形胶质细胞对轴突生长的初步研究表明,在没有生长因子的情况下,轴突生长较快,富含共培养条件。本3D共培养芯片可以提供一种新方法观察星形胶质细胞对轴突生长的影响在三维培养系统中。

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