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Nano Petri dishes: a new polystyrene platform for studying cell-nanoengineered surface interactions

机译:纳米陪替氏培养皿:研究细胞-纳米工程表面相互作用的新型聚苯乙烯平台

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摘要

In this study, we fabricated and fully characterized a new type of polystyrene (PS) cell-culture platform containing nanoengineered surfaces (NES), referred to as a nano Petri dish, which can be used at the transition stage of basic cell-NES interaction studies for clinical applications. Nano-injection molding in this study was used for the mass production of the nano Petri dish having nanopore arrays. The effects of processing parameters of the injection molding on the replication quality of the nanopore arrays were quantitatively evaluated by means of design of experiments based on the Taguchi method. This allowed efficient and reliable cell culture studies by providing large numbers of the same dishes, in addition to removing the fixation step of the NES plates inside the cell-culture container. Physical, chemical and mechanical properties of the NES, as well as cell behavior including attachment and proliferation of human osteosarcoma MG-63 cells on the NES, were then characterized, with and without the oxygen plasma surface treatment.
机译:在这项研究中,我们制造并充分表征了一种新型的包含纳米工程表面(NES)的聚苯乙烯(PS)细胞培养平台,称为纳米陪替氏培养皿,可用于基本细胞与NES相互作用的过渡阶段临床应用研究。本研究中的纳米注射成型用于大规模生产具有纳米孔阵列的纳米培养皿。通过基于Taguchi方法的实验设计,定量评估了注塑工艺参数对纳米孔阵列复制质量的影响。通过去除细胞培养容器内NES板的固定步骤,可以通过提供大量相同的培养皿来进行有效而可靠的细胞培养研究。然后,在有或没有氧等离子体表面处理的情况下,表征了NES的物理,化学和机械特性以及细胞行为,包括人骨肉瘤MG-63细胞在NES上的附着和增殖。

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