论文标题
用于生物传感应用的高敏关系钻石纳米阵列上的神经元生长
Neuronal growth on high-aspect-ratio diamond nanopillar arrays for biosensing applications
论文作者
论文摘要
通过同时在活细胞培养的空间和时间分辨率的同时监测神经元活性对于促进对大脑的发育和功能的理解以及对脑疾病起源的进一步见解至关重要。虽然已经证明,在钻石中中心的氮胶囊(NV)的量子感应能力可以实时检测海洋无脊椎动物中大型神经元的动作电位,量子监测哺乳动物神经元的量子监测(对较小的维度较小,因此产生了较小的信号,因此产生了更低的空间水平,并需要较高的空间分辨率。在这种情况下,钻石纳米结构可以为将钻石平台灵敏度提高到所需的水平提供机会。但是,缺乏对纳米结构钻石表面对神经元活力和生长的影响的全面分析。在这里,我们对带有大规模纳米阵列的单晶钻石表面进行了模板,我们成功地证明了其上有生命和功能性的原代小鼠海马神经元网络的增长。我们对几何参数的研究揭示了沿纳米乳轴轴的优先生长,并在细胞膜和纳米骨顶点之间具有出色的物理接触。我们的结果表明,神经元的生长可以在钻石纳米圆骨上量身定制,以实现一个纳米光子量子传感平台,用于以亚细胞分辨率记录宽场和无标签的神经元活动。
Monitoring neuronal activity with simultaneously high spatial and temporal resolution in living cell cultures is crucial to advance understanding of the development and functioning of our brain, and to gain further insights in the origin of brain disorders. While it has been demonstrated that the quantum sensing capabilities of nitrogen-vacancy (NV) centers in diamond allow real time detection of action potentials from large neurons in marine invertebrates, quantum monitoring of mammalian neurons (presenting much smaller dimensions and thus producing much lower signal and requiring higher spatial resolution) has hitherto remained elusive. In this context, diamond nanostructuring can offer the opportunity to boost the diamond platform sensitivity to the required level. However, a comprehensive analysis of the impact of a nanostructured diamond surface on the neuronal viability and growth was lacking. Here, we pattern a single crystal diamond surface with large-scale nanopillar arrays and we successfully demonstrate growth of a network of living and functional primary mouse hippocampal neurons on it. Our study on geometrical parameters reveals preferential growth along the nanopillar grid axes with excellent physical contact between cell membrane and nanopillar apex. Our results suggest that neuron growth can be tailored on diamond nanopillars to realize a nanophotonic quantum sensing platform for wide-field and label-free neuronal activity recording with sub-cellular resolution.