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A neuronal wiring platform through microridges for rationally engineered neural circuits

机译:通过微孔的神经元布线平台用于合理设计的神经电路

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摘要

Precisely engineered neuronal circuits are promising for both fundamental research and clinical applications. However, randomly plating thousands of cells during neural network fabrication remains a major technical obstacle, which often results in a loss of tracking in neurons' identities. In this work, we demonstrated an accurate and unique neural wiring technique, mimicking neurons' natural affinity to microfibers. SU-8 microridges, imitating lie-down microfibers, were photolithographically patterned and then selectively coated with poly-l-lysine. We accurately plated Aplysia californica neurons onto designated locations. Plated neurons were immobilized by circular microfences. Furthermore, neurites regrew effectively along the microridges in vitro and reached adjacent neurons without undesirable crosstalks. Functional chemical synapses also formed between accurately wired neurons, enabling two-way transmission of electrical signals. Finally, we fabricated microridges on a microelectrode array. Neuronal spikes, stimulation-evoked synaptic activity, and putative synaptic adaption between connected neurons were observed. This biomimetic platform is simple to fabricate and effective with neurite pathfinding. Therefore, it can serve as a powerful tool for fabricating neuronal circuits with rational design, organized cellular communications, and fast prototyping.
机译:精确设计的神经元电路对于基础研究和临床应用是有前途的。然而,在神经网络制造期间随机镀成千上万的细胞仍然是主要的技术障碍,这通常导致神经元标识中的跟踪丧失。在这项工作中,我们证明了一种准确而独特的神经布线技术,模仿神经元对微纤维的自然亲和力。 SU-8微纤维,涂沉管微纤维,光刻图案化,然后选择性地涂覆有聚-L-赖氨酸。我们将Aplysia Californica神经元准确地涂在指定位置。通过圆形微胶固定镀神经元。此外,神经疾病在体外沿着微孔有效重新重新重新重新介绍,并达到邻近的神经元,没有不受欢迎的串扰。在精确有线神经元之间也形成功能化学突触,从而实现电信号的双向传输。最后,我们在微电极阵列上制造了微孔。观察到神经元尖峰,刺激诱发的突触活动和连接神经元之间的推定突触适应。这种仿生平台易于制造和有效的神经突探测器。因此,它可以作为制造具有合理设计,有组织的蜂窝通信和快速原型制造神经元电路的强大工具。

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