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Effect of barium-coated halloysite nanotube addition on the cytocompatibility, mechanical and contrast properties of poly(methyl methacrylate) cement

机译:钡涂层埃洛石纳米管的添加对聚甲基丙烯酸甲酯水泥的细胞相容性,力学性能和对比性能的影响

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摘要

Halloysite nanotubes (HNTs) were investigated as a platform for tunable nanoparticle composition and enhanced opacity in poly(methyl methacrylate) (PMMA) bone cement. Halloysite has been widely used to increase the mechanical properties of various polymer matrices, in stark contrast to other fillers such as barium sulfate that provide opacity but also decrease mechanical strength. The present work describes a dry deposition method for successively fabricating barium sulfate nanoparticles onto the exterior surface of HNTs. A sintering process was used to coat the HNTs in barium sulfate. Barium sulfate-coated HNTs were then added to PMMA bone cement and the samples were tested for mechanical strength and tailored opacity correlated with the fabrication ratio and the amount of barium sulfate-coated HNTs added. The potential cytotoxic effect of barium-coated HNTs in PMMA cement was also tested on osteosarcoma cells. Barium-coated HNTs were found to be completely cytocompatible, and cell proliferation was not inhibited after exposure to the barium-coated HNTs embedded in PMMA cement. We demonstrate a simple method for the creation of barium-coated nanoparticles that imparted improved contrast and material properties to native PMMA. An easy and efficient method for coating clay nanotubes offers the potential for enhanced imaging by radiologists or orthopedic surgeons.
机译:研究了埃洛石纳米管(HNT)作为可调谐纳米颗粒组成和聚甲基丙烯酸甲酯(PMMA)骨水泥增强不透明性的平台。与提供不透明性但同时降低机械强度的其他填料(例如硫酸钡)形成鲜明对比的是,埃洛石还被广泛用于提高各种聚合物基体的机械性能。本工作描述了一种用于在HNT的外表面上连续制造硫酸钡纳米颗粒的干式沉积方法。使用烧结工艺将HNT涂覆在硫酸钡中。然后将涂有硫酸钡的HNTs添加到PMMA骨水泥中,并测试样品的机械强度和特制的不透明度,该透明度与制造比率和所添加的涂有硫酸钡的HNTs的数量相关。还对骨肉瘤细胞测试了PMMA水泥中钡涂层HNTs的潜在细胞毒性作用。发现钡涂层的HNT具有完全的细胞相容性,暴露于嵌入在PMMA水泥中的钡涂层的HNT后,细胞的增殖不受抑制。我们演示了一种创建钡涂层纳米粒子的简单方法,该方法赋予天然PMMA增强的对比度和材料性能。一种简便有效的涂覆粘土纳米管的方法为放射科医生或整形外科医生提供了增强成像的潜力。

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