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Toward Intelligent Synthetic Neural Circuits: Directing and Accelerating Neuron Cell Growth by Self-Rolled-Up Silicon Nitride Microtube Array

机译:迈向智能合成神经电路:通过自卷起的氮化硅微管阵列指导和加速神经元细胞的生长

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摘要

In neural interface platforms, cultures are often carried out on a flat, open, rigid, and opaque substrate, posing challenges to reflecting the native microenvironment of the brain and precise engagement with neurons. Here we present a neuron cell culturing platform that consists of arrays of ordered microtubes (2.74.4 mu m in diameter), formed by strain-induced self-rolled-up nanomembrane (s-RUM) technology using ultrathin (<40 nm) silicon nitride (SiNx) film on transparent substrates. These microtubes demonstrated robust physical confinement and unprecedented guidance effect toward outgrowth of primary cortical neurons, with a coaxially confined configuration resembling that of myelin sheaths. The dynamic neural growth inside the microtube, evaluated with continuous live-cell imaging, showed a marked increase (20x) of the growth rate inside the microtube compared to regions outside the microtubes. We attribute the dramatic accelerating effect and precise guiding of the microtube array to three-dimensional (3D) adhesion and electrostatic interaction with the SiNx microtubes, respectively. This work has clear implications toward building intelligent synthetic neural circuits by arranging the size, site, and patterns of the microtube array, for potential treatment of neurological disorders.
机译:在神经接口平台中,培养通常在平坦,开放,坚硬且不透明的基质上进行,这对反映大脑的自然微环境以及与神经元的精确接合提出了挑战。在这里,我们介绍了一个神经元细胞培养平台,该平台由有序微管阵列(直径为2.74.4微米)组成,通过使用超薄(<40 nm)硅的应变诱导自卷起纳米膜(s-RUM)技术形成透明基板上的氮化硅(SiNx)膜。这些微管表现出强大的物理限制和对原代皮层神经元向外生长的空前指导作用,其同轴限制的构型类似于髓鞘。通过连续活细胞成像评估,微管内部的动态神经生长显示,与微管外部区域相比,微管内部的生长速率显着增加(20倍)。我们将微管阵列的显着加速效果和精确引导归因于三维(3D)附着力以及与SiNx微管的静电相互作用。这项工作对通过布置微管阵列的大小,部位和模式来构建智能的合成神经回路具有明显的启示,以潜在地治疗神经系统疾病。

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