Kim Hwan D, Kim Jiyong, Koh Rachel H, Shim Jimin, Lee Jong-Chan, Kim Tae-Il, Hwang Nathaniel S
School of Chemical and Biological Engineering, N-Bio Institute, Institute of Chemical Process, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.
Department of Periodontology, School of Dentistry, Seoul National University, 101 Daehak-ro, Jongno-gu, Seoul 03080, Republic of Korea.
ACS Biomater Sci Eng. 2017 Oct 9;3(10):2470-2479. doi: 10.1021/acsbiomaterials.7b00299. Epub 2017 Sep 7.
Graphene oxide (GO) is considered a comparatively recent biomaterial with enormous potential because of its nontoxicity, high dispersity, and enhanced interaction with biomolecules. These characteristics of GO can promote the interactions between the substrates and cell surfaces. In this study, we incorporated GO in a cryogel-based scaffold system to observe their influence on the osteogenic responses of human tonsil-derived mesenchymal stem cells (hTMSCs). Compared to polyethylene glycol (PEG)-based cryogel scaffold, GO-embedded PEG-based (PEGDA-GO) cryogels not only showed improved cell attachment and focal adhesion kinase (FAK) signaling activation but also enhanced cell viability. Taken together, we demonstrated that PEGDA-GO cryogels can stimulate osteogenic differentiation under an osteoinductive condition and enhance osteogenic phenotypes compared to the control group. In summary, we demonstrate that GO embedded in cryogels system is an effective biofunctionalizing scaffold to control osteogenic commitment of stem cells.
氧化石墨烯(GO)因其无毒、高分散性以及与生物分子的增强相互作用,被认为是一种具有巨大潜力的相对新型生物材料。GO的这些特性可促进底物与细胞表面之间的相互作用。在本研究中,我们将GO纳入基于冷冻凝胶的支架系统中,以观察它们对人扁桃体来源的间充质干细胞(hTMSCs)成骨反应的影响。与基于聚乙二醇(PEG)的冷冻凝胶支架相比,嵌入GO的基于PEG的(PEGDA-GO)冷冻凝胶不仅显示出改善的细胞附着和粘着斑激酶(FAK)信号激活,还提高了细胞活力。综上所述,我们证明与对照组相比,PEGDA-GO冷冻凝胶在骨诱导条件下可刺激成骨分化并增强成骨表型。总之,我们证明嵌入冷冻凝胶系统中的GO是一种有效的生物功能化支架,可控制干细胞的成骨定向。