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Untersuchung eines porösen, keramischen Biomaterials auf Basis von TiO 2 und Perlit am Modell humaner Osteoblasten

机译:基于成骨细胞模型的基于TiO 2和珍珠岩的多孔陶瓷生物材料的研究

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摘要

In this study, a novel porous ceramic material is introduced and investigated for basic biocompatibility and possible application as bone graft. The material is a sintered compound of the volcanic silicate perlite and rutile TiO2, with a macrostructure of interconnecting accessible pores. It is both inexpensive and easy to manufacture. Since perlite has not been used as a biomaterial before, we first investigated the material for corrosion and leaching of trace elements under extended incubation in saline for 21 days. No significant corrosion was noted. The supernatants did not contain critical concentrations of potentially toxic trace elements. Basic biocompatibility of the material was tested by incubating murine L929 fibroblasts in material-conditioned medium for 24 h. No cytotoxicity was noted. Complement activation was assayed employing a model of anticoagulated human full blood. An uncritical elevation of C5a was observed. In an additional in vitro model, primary human osteoblast-like cells were seeded directly onto samples of the material and its constituent components and incubated for 9 days. The material and samples of its constituent components sustained human osteoblast attachment and proliferation and did not induce a critical expression of inflammatory cytokines. We conclude that Ecopore is highly biocompatible and suitable for bone grafting.
机译:在这项研究中,介绍了一种新型的多孔陶瓷材料,并对其基本的生物相容性进行了研究,并可能用作骨移植物。该材料是火山硅酸盐珍珠岩和金红石型TiO2的烧结化合物,具有互连可及孔隙的宏观结构。它既便宜又易于制造。由于珍珠岩以前没有被用作生物材料,因此我们首先在盐水中延长孵育21天后研究了该材料对微量元素的腐蚀和浸出。没有发现明显的腐蚀。上清液不含临界浓度的潜在毒性微量元素。材料的基本生物相容性是通过将鼠L929成纤维细胞在材料条件培养基中孵育24小时来测试的。未观察到细胞毒性。使用抗凝人全血模型测定补体激活。观察到C5a的非临界升高。在另一个体外模型中,将原代人成骨细胞样细胞直接接种到该材料及其组成成分的样品上,并孵育9天。该材料及其组成成分的样品可维持人类成骨细胞的附着和增殖,并且不会诱导炎症性细胞因子的关键表达。我们得出的结论是,Ecopore具有高度的生物相容性,适合于骨移植。

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    Rüger Matthias;

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  • 年度 2005
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