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Fabricating versatile cell supports from nano- and micro-sized graphene oxide flakes

机译:从纳米和微尺寸的石墨烯薄片制造通络细胞支撑件

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Micro-sized structures made from graphene oxide (GO) attract high interest for their extensive use in tissue engineering. The fabrication and cytotoxicity of 3D graphene-based scaffolds so far have not been extensively discussed with relation to the flake sizes used. In this work we considered GO flakes of two different lognormal size distributions (GO: 4.9 +/- 3.8 mu m and GO 1 h: 151.6 +/- 1.9 nm) as model flakes for fabrication of 3D graphene-based cell culture supports: paper (i.e. 3D layered film structure) and reduced graphene oxide (rGO) microfiber using hydrothermal methods. We then used two model cell lines of neuronal origin (SH-SY5Y and HEK-293) to study subsequent scaffolds surface-cells interactions. In particular, the adhesion of HEK cells to the formed structures was much higher than for SH-SY5Y cells, as evidenced by various atomic force, electron and optical microscopy techniques. Formed rGO microfibers had more desired nano-topography (surface roughness) for cell adhesion and growth than simple GO paper, making it ideal scaffold for neural tissue engineering. This work provides insights into the fundamental rules for fabrication of graphene oxide-based cell supports and their subsequently differing interactions with malignant and non-malignant cells.
机译:由石墨烯氧化物(GO)制成的微尺寸结构对其在组织工程中的广泛使用感到高兴。到目前为止,基于3D石墨烯的支架的制造和细胞毒性尚未与使用的薄片尺寸进行广泛讨论。在这项工作中,我们考虑了两种不同的Lognormal大小分布的薄片(Go:4.9 +/- 3.8 mu m,作为用于制造基于3D石墨烯的细胞培养的模型薄片:纸张(即3D层叠膜结构)和使用水热方法的石墨烯氧化物(RGO)微纤维。然后,我们使用了两种神经元源(SH-SY5Y和HEK-293)的模型细胞系,以研究随后的支架表面细胞相互作用。特别地,HEK细胞对所形成的结构的粘附远高于SH-SY5Y细胞,如各种原子力,电子和光学显微镜技术所证明的。形成的RGO微纤维具有更高的纳米形貌(表面粗糙度),用于细胞粘附和生长而不是简单的纸张,使其成为神经组织工程的理想支架。这项工作提供了洞察石墨烯氧化物基细胞支持的基本规则及其随后与恶性和非恶性细胞的不同相互作用。

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