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Graphene-Based Nanomaterials: From Production to Integration With Modern Tools in Neuroscience

机译:石墨烯基纳米材料:从生产到与神经科学现代工具的集成

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摘要

Graphene, a two-dimensional carbon crystal, has emerged as a promising material for sensing and modulating neuronal activity in vitro and in vivo. In this review, we provide a primer for how manufacturing processes to produce graphene and graphene oxide result in materials properties that may be tailored for a variety of applications. We further discuss how graphene may be composited with other bio-compatible materials of interest to make novel hybrid complexes with desired characteristics for bio-interfacing. We then highlight graphene’s ever-widen utility and unique properties that may in the future be multiplexed for cross-modal modulation or interrogation of neuronal network. As the biological effects of graphene are still an area of active investigation, we discuss recent development, with special focus on how surface coatings and surface properties of graphene are relevant to its biological effects. We discuss studies conducted in both non-murine and murine systems, and emphasize the preclinical aspect of graphene’s potential without undermining its tangible clinical implementation.
机译:石墨烯是一种二维碳晶体,已成为一种有前途的材料,可用于在体外和体内传感和调节神经元活性。在这篇综述中,我们为生产石墨烯和氧化石墨烯的制造工艺如何导致可以针对各种应用量身定制的材料特性提供了入门。我们进一步讨论了石墨烯如何与其他感兴趣的生物相容性材料复合以制备具有所需生物接口特性的新型杂化复合物。然后,我们重点介绍石墨烯的广泛用途和独特的特性,这些特性将来可能会被复用以用于交叉模态调制或对神经元网络的询问。由于石墨烯的生物学效应仍是一个活跃的研究领域,因此我们讨论了最近的发展,特别关注石墨烯的表面涂层和表面性质如何与其生物学效应相关。我们讨论了在非鼠类和鼠类系统中进行的研究,并着重强调了石墨烯在临床上的潜力,同时又不会损害其切实的临床应用。

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