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首页> 外文期刊>Acta biomaterialia >Development and characterization of rhVEGF-loaded poly(HEMA-MOEP) coatings electrosynthesized on titanium to enhance bone mineralization and angiogenesis.
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Development and characterization of rhVEGF-loaded poly(HEMA-MOEP) coatings electrosynthesized on titanium to enhance bone mineralization and angiogenesis.

机译:钛氢化术rHVEGF负载聚(HEMA-MOEP)涂层的开发与表征,增强骨矿化和血管生成。

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摘要

Osteointegration of titanium implants could be significantly improved by coatings capable of promoting both mineralization and angiogenesis. In the present study, a copolymeric hydrogel coating, poly-2-hydroxyethyl methacrylate-2-methacryloyloxyethyl phosphate (P(HEMA-MOEP)), devised to enhance calcification in body fluids and to entrap and release growth factors, was electrosynthesized for the first time on titanium substrates and compared to poly-2-hydroxyethyl methacrylate (PHEMA), used as a blank reference. Polymers exhibiting negatively charged groups, such as P(HEMA-MOEP), help to enhance implant calcification. The electrosynthesized coatings were characterized by X-ray photoelectron spectroscopy and atomic force microscopy. MG-63 human osteoblast-like cell behaviour on the coated specimens was investigated by scanning electron microscopy, MTT viability test and osteocalcin mRNA detection. The ability of negatively charged phosphate groups to promote hydroxyapatite-like calcium phosphate deposition on the implants was explored by immersing them in simulated body fluid. Similar biological responses were observed in both coated specimens, while calcium-phosphorus globules were detected only on P(HEMA-MOEP) surfaces pretreated with alkaline solution. Testing of the ability of P(HEMA-MOEP) hydrogels to entrap and release human recombinant vascular endothelial growth factor, to tackle the problem of insufficient oxygen and nutrient delivery, suggested that P(HEMA-MOEP)-coated titanium prostheses could represent a multifunctional material suitable for bone restoration applications.
机译:通过能够促进矿化和血管生成的涂层可以显着改善钛植入物的骨折叠。在本研究中,共聚水凝胶涂料,聚-2-羟乙基甲基丙烯酸甲酯-2-甲基丙烯酰甲氧基甲基磷酸酯(P(HEMA-MOEP)),设计为增强体液中的钙化并捕获和释放生长因子,是第一个的钛基材上的时间并与甲基丙烯酸酯(PHEMA)相比,用作空白参考。呈现带负电的聚合物,如P(HEMA-MOEP),有助于增强植入物钙化。通过X射线光电子能谱和原子力显微镜表征电织化涂层。通过扫描电子显微镜,MTT活力试验和骨科蛋白mRNA检测来研究涂覆的标本上的Mg-63在涂覆的样品上的人成骨细胞样。通过将它们浸入模拟体液中,探讨了带负电荷的磷酸盐基团以促进植入物的磷酸盐样磷酸钙沉积的能力。在两个涂覆的标本中观察到类似的生物反应,而仅在用碱性溶液预处理的P(HEMA-MOEP)表面上检测钙磷小球。 p(hema-moep)水凝胶的能力诱捕和释放人重组血管内皮生长因子,以解决氧气不足的问题和营养递送的问题,表明p(hema-mop)涂料的钛假体可以代表多功能适用于骨恢复应用的材料。

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