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Performance of the Polydopamine-Graphene Oxide Composite Substrate in the Osteogenic Differentiation of Mouse Embryonic Stem Cells

机译:多胺 - 石墨烯氧化物复合基材在小鼠胚胎干细胞的成骨分化中的性能

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摘要

Graphene oxide (GO) is a biocompatible material considered a favorable stem cell culture substrate. In this study, GO was modified with polydopamine (PDA) to facilitate depositing GO onto a tissue culture polystyrene (PT) surface, and the osteogenic performance of the PDA/GO composite in pluripotent embryonic stem cells (ESCs) was investigated. The surface chemistry of the PDA/GO-coated PT surface was analyzed by scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS). A high cell viability of ESCs cultured on the PDA/GO composite-coated surface was initially ensured. Then, the osteogenic differentiation of the ESCs in response to the PDA/GO substrate was assessed by alkaline phosphatase (ALP) activity, intracellular calcium levels, matrix mineralization assay, and evaluation of the mRNA and protein levels of osteogenic factors. The culture of ESCs on the PDA/GO substrate presented higher osteogenic potency than that on the uncoated control surface. ESCs cultured on the PDA/GO substrate expressed significantly higher levels of integrin α5 and β1, as well as bone morphogenetic protein receptor (BMPR) types I and II, compared with the control groups. The phosphorylation of extracellular signal-regulated kinase (ERK)1/2, p38, and c-Jun-N-terminal kinase (JNK) mitogen-activated protein kinases (MAPKs) was observed in ESCs culture on the PDA/GO substrate. Moreover, BMP signal transduction by SMAD1/5/8 phosphorylation was increased more in cells on PDA/GO than in the control. The nuclear translocation of SMAD1/5/8 in cells was also processed in response to the PDA/GO substrate. Blocking activation of the integrin α5/β1, MAPK, or SMAD signaling pathways downregulated the PDA/GO-induced osteogenic differentiation of ESCs. These results suggest that the PDA/GO composite stimulates the osteogenic differentiation of ESCs via the integrin α5/β1, MAPK, and BMPR/SMAD signaling pathways.
机译:石墨烯氧化物(GO)是一种被认为是良好的干细胞培养基质的生物相容性材料。在该研究中,使用聚二胺(PDA)进行改性,以促进沉积在组织培养聚苯乙烯(Pt)表面上,并研究了PDA /去复合材料在多能胚胎干细胞(ESC)中的成沸性能。通过扫描电子显微镜(SEM)和X射线光电子能谱(XPS)分析PDA /覆盖Pt表面的表面化学。最初确保了在PDA /去复合表面上培养的ESC的高细胞活力。然后,通过碱性磷酸酶(ALP)活性,细胞内钙水平,基质矿化测定,评估骨质磷酸酶活性,细胞内钙水平,对骨质发生因子的mRNA和蛋白质水平评估ESC对PDA /去底物的响应于PDA /去底物的致致响应于PDA / GO衬底的成骨分化。 PDA / GO底物上的ESC培养呈上骨质发生效力高于未涂覆的对照表面上的骨质发生效力。与对照组相比,在PDA /去底物上培养的ESC表达了较高水平的整合蛋白α5和β1,以及骨形态发生蛋白受体(BMPR)类型I和II。在PDA /去底物上的Escs培养中观察到细胞外信号调节激酶(ERK)1/2,P38和C-JUN-N-末端激酶(JNK)丝肠激活蛋白激酶(MAPK)的磷酸化。此外,在PDA /去的细胞上,Smad1 / 5/8磷酸化的BMP信号转导比对照组更多。还响应于PDA /去底物处理细胞中Smad1 / 5/8的核转位。阻断整合蛋白α5/β1,MAPK或SMAD信号通路的激活下调了PDA / Go诱导的ESC的骨质发生分化。这些结果表明,PDA / GO复合材料通过整合蛋白α5/β1,MAPK和BMPR / Smad信号传导途径刺激ESC的骨质发生分化。

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