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原代培养中聚合微环境对神经干细胞特性的影响。

Effects of the polymeric niche on neural stem cell characteristics during primary culturing.

机构信息

Research Unit for Experimental Neurotraumatology, Department of Neurosurgery, Medical University of Graz, Auenbruggerplatz 2/2, 8036, Graz, Austria.

出版信息

J Mater Sci Mater Med. 2014 May;25(5):1339-55. doi: 10.1007/s10856-014-5155-y. Epub 2014 Feb 28.

Abstract

The polymeric niche encountered by cells during primary culturing can affect cell fate. However, most cell types are primarily propagated on polystyrene (PS). A cell type specific screening for optimal primary culture polymers particularly for regenerative approaches seems inevitable. The effect of physical and chemical properties of treated (corona, oxygen/nitrogen plasma) and untreated cyclic olefin polymer (COP), polymethymethacrylate (PMMA), PP, PLA, PS, PC on neuronal stem cell characteristics was analyzed. Our comprehensive approach revealed plasma treated COP and PMMA as optimal polymers for primary neuronal stem cell culturing and propagation. An increase in the number of NT2/D1 cells with pronounced adhesion, metabolic activities and augmented expression of neural precursor markers was associated to the plasma treatment of surfaces of COP and PMMA with nitrogen or oxygen, respectively. A shift towards large cell sizes at stable surface area/volume ratios that might promote the observed increase in metabolic activities and distinct modulations in F-actin arrangements seem to be primarily mediated by the plasma treatment of surfaces. These results indicate that the polymeric niche has a distinct impact on various cell characteristics. The selection of distinct polymers and the controlled design of an optimized polymer microenvironment might thereby be an effective tool to promote essential cell characteristics for subsequent approaches.

摘要

在原代培养过程中,细胞遇到的聚合体龛位会影响细胞命运。然而,大多数细胞类型主要在聚苯乙烯(PS)上进行繁殖。对于再生方法,针对最佳原代培养聚合物的细胞类型特异性筛选似乎是不可避免的。分析了经处理(电晕、氧/氮等离子体)和未经处理的环状烯烃聚合物(COP)、聚甲基丙烯酸甲酯(PMMA)、PP、PLA、PS、PC 的物理和化学性质对神经元干细胞特性的影响。我们的综合方法表明,等离子体处理的 COP 和 PMMA 是原代神经元干细胞培养和繁殖的最佳聚合物。与未经处理的 COP 和 PMMA 相比,用氮或氧等离子体处理 COP 和 PMMA 表面后,NT2/D1 细胞的数量增加,粘附、代谢活性增强,神经前体细胞标志物表达增加。在稳定的表面积/体积比下,细胞大小向大细胞的转变可能会促进观察到的代谢活性的增加,以及 F-肌动蛋白排列的明显调节,这似乎主要是通过等离子体处理表面来介导的。这些结果表明,聚合体龛位对各种细胞特性有明显的影响。选择不同的聚合物并设计优化的聚合物微环境可能是促进后续方法中必要细胞特性的有效工具。

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