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3D engineered neural networks coupled to Micro-Electrode Arrays: development of an innovative in-vitro experimental model for neurophysiological studies

机译:3D工程化神经网络耦合到微电极阵列:开发神经生理学研究的创新体外实验模型

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2D neuronal populations coupled to Micro-Electrode-Arrays (MEAs) constitute a well-established experimental in-vitro platform to study neurobiology, network electrophysiology, and basic injury-disease mechanisms. They are also widely used for neuropharmacological screening and neurotoxicity tests. Here we propose a new experimental in-vitro paradigm constituted by 3D engineered networks coupled to both planar and innovative 3D-MEAs. The advantage of such a model is clearly its improved representation of the actual in-vivo environment while maintaining some of the advantages (control, observation) of in-vitro systems. We constructed a physically connected 3D neural network and we demonstrate how the 3D network dynamic differs from the corresponding 2D model, resembling the one detected in the in-vivo situation. The obtained results suggest new avenues for the use of such 3D models for neurophysiological studies or for the development of biohybrid microsystems for in-vivo neural repair.
机译:2D耦合到微电极 - 阵列(MEAS)的神经元群构成了一种熟悉的实验性体外平台,用于研究神经生物学,网络电生理学和碱性损伤机制。它们也广泛用于神经药理学筛查和神经毒性测试。在这里,我们提出了由3D工程网络构成的新实验体外范式,耦合到平面和创新的3D测量。这种模型的优点显然其改进了实际体内环境的表示,同时保持体外系统的一些优点(控制,观察)。我们构建了一个物理连接的3D神经网络,我们展示了3D网络动态的不同与相应的2D模型不同,类似于在体内情况下检测到的模型。所获得的结果表明,用于使用这种用于神经生理学研究的这种3D模型的新途径或用于体内神经修复的生物冬小微系统的开发。

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