首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Enhanced Osteogenic Differentiation of Human Mesenchymal Stem Cells on Amine-Functionalized Titanium Using Humidified Ammonia Supplied Nonthermal Atmospheric Pressure Plasma
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Enhanced Osteogenic Differentiation of Human Mesenchymal Stem Cells on Amine-Functionalized Titanium Using Humidified Ammonia Supplied Nonthermal Atmospheric Pressure Plasma

机译:使用潮湿的氨提供非热大气压等离子体增强人间充质干细胞对胺官能化钛的骨质化分化

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摘要

The surface molecular chemistry, such as amine functionality, of biomaterials plays a crucial role in the osteogenic activity of relevant cells and tissues during hard tissue regeneration. Here, we examined the possibilities of creating amine functionalities on the surface of titanium by using the nonthermal atmospheric pressure plasma jet (NTAPPJ) method with humidified ammonia, and the effects on human mesenchymal stem cell (hMSC) were investigated. Titanium samples were subjected to NTAPPJ treatments using nitrogen (N-P), air (A-P), or humidified ammonia (NA-P) as the plasma gas, while control (C-P) samples were not subjected to plasma treatment. After plasma exposure, all treatment groups showed increased hydrophilicity and had more attached cells than the C-P. Among the plasma-treated samples, the A-P and NA-P showed surface oxygen functionalities and exhibited greater cell proliferation than the C-P and N-P. The NA-P additionally showed surface amine-related functionalities and exhibited a higher level of alkaline phosphatase activity and osteocalcin expression than the other samples. The results can be explained by increases in fibronectin absorption and focal adhesion kinase gene expression on the NA-P samples. These findings suggest that NTAPPJ technology with humidified ammonia as a gas source has clinical potential for hard tissue generation.
机译:诸如胺官能度的表面分子化学在硬组织再生期间在相关细胞和组织的成骨活性中起着至关重要的作用。在这里,我们研究了通过使用潮湿的氨的非热大气压等离子体射流(NTAPPJ)方法在钛表面上产生胺函数的可能性,并研究了对人间充质干细胞(HMSC)的影响。使用氮气(N-P),空气(A-P)或潮湿的氨(Na-P)作为等离子体气体进行钛样品进行NTAPPJ处理,而对照(C-P)样品未进行等离子体处理。在血浆曝光后,所有治疗组显示亲水性增加,并且具有比C-P更多的细胞。在血浆处理的样品中,A-P和NA-P显示表面氧官能团,并且表现出比C-P和N-P更大的细胞增殖。 Na-P另外显示出与表面胺相关的功能,并且表现出比其他样品更高水平的碱性磷酸酶活性和骨钙蛋白表达。结果可以通过纤连蛋白吸收和局灶性粘附激酶基因表达的增加来解释Na-P样品。这些研究结果表明,作为气源的湿润氨的Ntappj技术具有硬组织产生的临床电位。

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