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底物效应调节成纤维细胞在石墨烯层上的黏附和增殖。

Substrate effect modulates adhesion and proliferation of fibroblast on graphene layer.

作者信息

Lin Feng, Du Feng, Huang Jianyong, Chau Alicia, Zhou Yongsheng, Duan Huiling, Wang Jianxiang, Xiong Chunyang

机构信息

State Key Laboratory for Turbulence and Complex System, and Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China.

State Key Laboratory for Turbulence and Complex System, and Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China; Department of Biomedical Engineering, Duke University, Durham, NC, 27708, USA.

出版信息

Colloids Surf B Biointerfaces. 2016 Oct 1;146:785-93. doi: 10.1016/j.colsurfb.2016.07.008. Epub 2016 Jul 5.

Abstract

Graphene is an emerging candidate for biomedical applications, including biosensor, drug delivery and scaffold biomaterials. Cellular functions and behaviors on different graphene-coated substrates, however, still remain elusive to a great extent. This paper explored the functional responses of cells such as adhesion and proliferation, to different kinds of substrates including coverslips, silicone, polydimethylsiloxane (PDMS) with different curing ratios, PDMS treated with oxygen plasma, and their counterparts coated with single layer graphene (SLG). Specifically, adherent cell number, spreading area and cytoskeleton configuration were exploited to characterize cell-substrate adhesion ability, while MTT assay was employed to test the proliferation capability of fibroblasts. Experimental outcome demonstrated graphene coating had excellent cytocompatibility, which could lead to an increase in early adhesion, spreading, proliferation, and remodeling of cytoskeletons of fibroblast cells. Notably, it was found that the underlying substrate effect, e.g., stiffness of substrate materials, could essentially regulate the adhesion and proliferation of cells cultured on graphene. The stiffer the substrates were, the stronger the abilities of adhesion and proliferation of fibroblasts were. This study not only deepens our understanding of substrate-modulated interfacial interactions between live cells and graphene, but also provides a valuable guidance for the design and application of graphene-based biomaterials in biomedical engineering.

摘要

石墨烯是生物医学应用领域的新兴候选材料,包括生物传感器、药物递送和支架生物材料。然而,细胞在不同石墨烯涂层底物上的功能和行为在很大程度上仍然难以捉摸。本文探讨了细胞对不同种类底物(包括盖玻片、硅酮、不同固化比例的聚二甲基硅氧烷(PDMS)、经氧等离子体处理的PDMS及其涂覆有单层石墨烯(SLG)的对应物)的粘附和增殖等功能反应。具体而言,利用贴壁细胞数量、铺展面积和细胞骨架构型来表征细胞-底物粘附能力,同时采用MTT法检测成纤维细胞的增殖能力。实验结果表明,石墨烯涂层具有优异的细胞相容性,可导致成纤维细胞早期粘附、铺展、增殖和细胞骨架重塑增加。值得注意的是,发现潜在的底物效应,例如底物材料的硬度,可从根本上调节在石墨烯上培养的细胞的粘附和增殖。底物越硬,成纤维细胞的粘附和增殖能力越强。本研究不仅加深了我们对底物调节活细胞与石墨烯之间界面相互作用的理解,还为基于石墨烯的生物材料在生物医学工程中的设计和应用提供了有价值的指导。

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