首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Graphene oxide-coated porous titanium for pulp sealing: an antibacterial and dentino-inductive restorative material
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Graphene oxide-coated porous titanium for pulp sealing: an antibacterial and dentino-inductive restorative material

机译:用于纸浆密封的石墨烯氧化涂层多孔钛:一种抗菌和牙蛋白感应恢复材料

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摘要

Pulp treatment techniques such as pulp capping, pulpotomy and pulp regeneration are all based on the principle of preserving vital pulp. However, specific dental restorative materials that can simultaneously protect pulp vitality and repair occlusal morphology have not been developed thus far. Traditional pulp capping materials cannot be used as dental restorative materials due to their long-term solubility and poor mechanical behavior. Titanium (Ti) is used extensively in dentistry and is regarded as a promising material for pulp sealing because of its favorable biocompatibility, processability and mechanical properties. Originally, we proposed the concept of "odontointegration", which represents direct dentin-like mineralization contact between pulp and the surface of the pulp sealing material; herein, we report the fabrication of a novel antibacterial and dentino-inductive material via micro-arc oxidation (MAO), incorporating self-assembled graphene oxide (GO) for Ti surface modification. The hierarchical micro/nanoporous structure of the MAO coating provides a suitable microenvironment for odontogenic differentiation of human dental pulp stem cells, and GO loading contributes to antibacterial activity. Scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy and Raman spectroscopy were employed for structure and elemental analysis. In vitro studies, including cell adhesion, Live/Dead and CCK-8 assays, alkaline phosphatase activity and calcium deposition assay, real-time polymerase chain reaction, western blot analysis and immunofluorescence staining were used to examine cell adhesion, viability, proliferation, mineralization, and odontogenic differentiation ability. Antibacterial properties against Streptococcus mutans were analyzed by SEM, spread plate, Live/Dead and Alamar blue tests. The Ti-MAO-1.0 mg mL(-1) GO group exhibited excellent cell adhesion, odontoblast differentiation, mineralization, and antibacterial ability, which are beneficial to odontointegration.
机译:纸浆处理技术如纸浆封端,牙髓囊和纸浆再生均基于保存重要纸浆的原理。然而,到目前为止,还没有开发能够同时保护纸浆活力和修复咬合形态的特定牙科修复材料。由于它们的长期溶解性和机械性能差,传统的纸浆覆盖材料不能用作牙科修复材料。钛(TI)在牙科广泛使用,并且由于其有利的生物相容性,可加工性和机械性能而被认为是纸浆密封的有希望的材料。最初,我们提出了“Odontoneagration”的概念,它代表纸浆与纸浆密封材料的表面之间的直接牙本质状矿化接触;在此,我们通过微弧氧化(MAO)报告新型抗菌和牙齿感应材料的制备,包括用于Ti表面改性的自组装石墨烯氧化物(GO)。 MAO涂层的分层微/纳米孔结构为人牙牙髓干细胞的牙肠病分化提供了合适的微环境,并且GO负载有助于抗菌活性。扫描电子显微镜(SEM),能量分散X射线光谱和拉曼光谱用于结构和元素分析。体外研究,包括细胞粘附,活/死和CCK-8测定,碱性磷酸酶活性和钙沉积测定,实时聚合酶链反应,蛋白质印迹分析和免疫荧光染色用于检查细胞粘附,活力,增殖,矿化和幼儿分化能力。通过SEM,涂抹板,Live / Dead和Alamar蓝色测试分析了对链球菌的抗菌性能。 Ti-MaO-1.0mg ml(-1)Go组出现出优异的细胞粘附,牙卵细胞分化,矿化和抗菌能力,这些能力是有益的。

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