Wolfrum Bernhard, Mourzina Yulia, Sommerhage Frank, Offenhäusser Andreas
ISG2: Institute for Thin Films and Interfaces, Center of Nanoelectronic Systems for Information Technology, Research Center Juelich, 52425 Juelich, Germany.
Nano Lett. 2006 Mar;6(3):453-7. doi: 10.1021/nl052370x.
A biohybrid system composed of neuronal cells and silicon-supported nanoporous membranes has been designed to facilitate control of the biochemical environment of neuronal networks with cellular resolution. The membranes may exhibit variable pore sizes and interpore distances and are interfaced to a microfluidic device. Different porosity parameters give rise to changes in the transconductance of the nanopores and can therefore be used to control diffusion of molecules through the membranes. It was shown that the porous membranes are biocompatible with primary vertebrate as well as insect neurons. Our results indicate that nanoporous membranes may be used to interface with biological materials in a biohybrid system, for example as an artificial chemical synapse interface.
一种由神经元细胞和硅支撑的纳米多孔膜组成的生物混合系统已被设计出来,以便以细胞分辨率促进对神经网络生化环境的控制。这些膜可能具有可变的孔径和孔间距,并与微流体装置相连。不同的孔隙率参数会导致纳米孔跨导的变化,因此可用于控制分子通过膜的扩散。结果表明,多孔膜与原代脊椎动物神经元以及昆虫神经元具有生物相容性。我们的结果表明,纳米多孔膜可用于在生物混合系统中与生物材料连接,例如作为人工化学突触界面。