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Micropatterning of Substrates for the Culture of Cell Networks by Stencil-Assisted Additive Nanofabrication

机译:模具辅助添加剂纳米制备用模板辅助纳米培养物培养的底物的微图

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摘要

The fabrication of in vitro neuronal cell networks where cells are chemically or electrically connected to form functional circuits with useful properties is of great interest. Standard cell culture substrates provide ensembles of cells that scarcely reproduce physiological structures since their spatial organization and connectivity cannot be controlled. Supersonic Cluster Beam Deposition (SCBD) has been used as an effective additive method for the large-scale fabrication of interfaces with extracellular matrix-mimicking surface nanotopography and reproducible morphological properties for cell culture. Due to the high collimation of SCBD, it is possible to exploit stencil masks for the fabrication of patterned films and reproduce features as small as tens of micrometers. Here, we present a protocol to fabricate micropatterned cell culture substrates based on the deposition of nanostructured cluster-assembled zirconia films by stencil-assisted SCBD. The effectiveness of this approach is demonstrated by the fabrication of micrometric patterns able to confine primary astrocytes. Calcium waves propagating in the astrocyte networks are shown.
机译:体外神经元细胞网络的制造,其中细胞化学或电连接以形成具有有用特性的功能性电路的兴趣。标准细胞培养基材提供了由于不能控制其空间组织和连接而几乎繁殖生理结构的细胞的整合。超音速簇光束沉积(SCBD)已被用作具有细胞外基质模拟表面纳米发作和细胞培养的可再现形态特性的大规模制造界面的大规模制备的有效添加方法。由于SCBD的高准直,可以利用用于制造图案化薄膜的模板面罩并再现小于数十微米的特征。这里,我们提出了一种基于通过模板辅助SCBD沉积纳米结构组装的氧化锆膜的微型解放细胞培养基材的方案。通过能够限制原发性星形胶质细胞的微米图案的制造证明了这种方法的有效性。显示了在星形胶质细胞网络中传播的钙波。

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