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首页> 外文期刊>ACS nano >Behaviors of NIH-3T3 fibroblasts on graphene/carbon nanotubes: Proliferation, focal adhesion, and gene transfection studies
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Behaviors of NIH-3T3 fibroblasts on graphene/carbon nanotubes: Proliferation, focal adhesion, and gene transfection studies

机译:NIH-3T3成纤维细胞在石墨烯/碳纳米管上的行为:增殖,粘着斑和基因转染研究

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摘要

Carbon-based materials, including graphene and carbon nanotubes, have been considered attractive candidates for biomedical applications such as scaffolds in tissue engineering, substrates for stem cell differentiation, and components of implant devices. Despite the potential biomedical applications of these materials, only limited information is available regarding the cellular events, including cell viability, adhesion, and spreading, that occur when mammalian cells interface with carbon-based nanomaterials. Here, we report behaviors of mammalian cells, specifically NIH-3T3 fibroblast cells, grown on supported thin films of graphene and carbon nanotubes to investigate biocompatibility of the artificial surface. Proliferation assay, cell shape analysis, focal adhesion study, and quantitative measurements of cell adhesion-related gene expression levels by RT-PCR reveal that the fibroblast cells grow well, with different numbers and sizes of focal adhesions, on graphene- and carbon nanotube-coated substrates. Interestingly, the gene transfection efficiency of cells grown on the substrates was improved up to 250% that of cells grown on a cover glass. The present study suggests that these nanomaterials hold high potential for bioapplications showing high biocompatibility, especially as surface coating materials for implants, without inducing notable deleterious effects while enhancing some cellular functions (i.e., gene transfection and expression).
机译:包括石墨烯和碳纳米管在内的碳基材料被认为是生物医学应用的有吸引力的候选材料,例如组织工程中的支架,干细胞分化的基质以及植入装置的组件。尽管这些材料具有潜在的生物医学应用价值,但关于哺乳动物细胞与碳基纳米材料相互作用时发生的细胞事件(包括细胞生存力,粘附和扩散)的信息有限。在这里,我们报告了在石墨烯和碳纳米管的支撑薄膜上生长的哺乳动物细胞,特别是NIH-3T3成纤维细胞的行为,以研究人造表面的生物相容性。通过RT-PCR进行增殖测定,细胞形状分析,粘着斑研究以及定量测定细胞粘着相关基因表达水平,结果表明成纤维细胞在石墨烯和碳纳米管上生长良好,具有不同数量和大小的粘着斑。涂层基材。有趣的是,在底物上生长的细胞的基因转染效率提高到在盖玻片上生长的细胞的基因转染效率高达250%。本研究表明,这些纳米材料具有很高的生物应用潜力,特别是作为植入物的表面涂层材料,具有很高的生物相容性,并且在增强某些细胞功能(即基因转染和表达)的同时,没有引起明显的有害作用。

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