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A biomimetic materials approach towards the development of a neural cell-based biosensor

机译:一种仿生材料方法,用于开发基于神经细胞的生物传感器

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Neural cells possess sensitive electrochemical transduction capabilities that could be useful in constructing cell-based biosensors. Previous studies on the neuron-electronics interface emphasize the importance of a tight coupling in optimization signal recording. In the present study, the intention was to improve the neuron-electronic interface coupling by mimicking the cell-substratum interactions found in vivo. Synthetic oligopeptides that are similar to the attachment-promoting laminin subdomains in the extracellular matrix were utilized to enhance cell-electrode coupling. They were immobilized on gold substrates, and their presence was verified with surface analysis spectroscopy (ESCA and ToF-SIMS). A significant increase in neural cell attachment efficacy was observed on peptide-modified substrates as compared to the unmodified ones. Here, the authors report results obtained with a biochip prototype that was constructed with attachment-promoting peptides on the microelectrodes. Strong signals were obtained. The results of this study would be useful in the development of biological neural networks and bioelectronic devices.
机译:神经细胞具有敏感的电化学转导功能,可用于构建基于细胞的生物传感器。先前对神经元-电子接口的研究强调了紧密耦合在优化信号记录中的重要性。在本研究中,目的是通过模仿体内发现的细胞-基质相互作用来改善神经元-电子界面的耦合。与细胞外基质中促进附着的层粘连蛋白亚结构域相似的合成寡肽被用于增强细胞-电极偶联。将它们固定在金基底上,并通过表面分析光谱法(ESCA和ToF-SIMS)验证了它们的存在。与未修饰的底物相比,在肽修饰的底物上观察到神经细胞附着功效的显着提高。在这里,作者报告了用生物芯片原型获得的结果,该原型是在微电极上用促进附着的肽构建的。获得了强信号。这项研究的结果将有助于生物神经网络和生物电子设备的发展。

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