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Rebuilding a realistic corticostriatal social network from dissociated cells

机译:从解离的细胞重建现实的皮质上皮社交网络

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摘要

Many of the methods available for the study of cortical influences on striatal neurons have serious problems. In vivo the connectivity is so complex that the study of input from an individual cortical neuron to a single striatal cell is nearly impossible. Mixed corticostriatal cultures develop many connections from striatal cells to cortical cells, in striking contrast to the fact that only connections from cortical cells to striatal cells are present in vivo. Furthermore, interneuron populations are over-represented in organotypic cultures. For these reasons, we have developed a method for growing cortical and striatal neurons in separated compartments that allows cortical neurons to innervate striatal cells in culture. The method works equally well for acutely dissociated or cryopreserved neurons and allows a number of manipulations that are not otherwise possible. Either cortical or striatal compartments can be transfected with channel rhodopsins. The activity of both areas can be recorded in multielectrode arrays or individual patch recordings from pairs of cells. Finally, corticostriatal connections can be severed acutely. This procedure enables determination of the importance of corticostriatal interaction in the resting pattern of activity. These cultures also facilitate development of sensitive analytical network methods to track connectivity.
机译:研究皮质对纹状体神经元影响的许多可用方法存在严重问题。在体内,连接是如此复杂,以至于几乎不可能研究从单个皮质神经元到单个纹状体细胞的输入。混合皮质皮质培养物建立了从纹状体细胞到皮质细胞的许多连接,这与在体内仅存在从皮质细胞到纹状体细胞的连接形成鲜明的对比。此外,中间型群体在器官型培养中过多地代表。由于这些原因,我们开发了一种在分离的隔室中生长皮质和纹状体神经元的方法,该方法可使皮质神经元支配培养物中的纹状体细胞。该方法对急性离解或低温保存的神经元同样有效,并且允许进行其他一些不可能的操作。皮质或纹状体隔室均可被视紫红质通道转染。这两个区域的活动都可以记录在多电极阵列中,也可以记录在成对的细胞中。最后,皮质口连接可被急性切断。该程序使得能够确定在静止的活动模式中皮质口角相互作用的重要性。这些文化还有助于开发敏感的分析网络方法来跟踪连通性。

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