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首页> 外文期刊>Bulletin of experimental biology and medicine >Materials from titanium - Cobalt alloys for hybrid implants
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Materials from titanium - Cobalt alloys for hybrid implants

机译:钛材料-混合植入物的钴合金

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摘要

We proposed a new method to increase the biocompatibility of porous materials that were synthesized from titanium and cobalt allows by the method of self-propagating high-temperature synthesis. This method suggested the introduction of calcium hydroxyapatite into the reaction mixture. Administration of calcium hydroxyapatite into the reaction mixture had a modifying effect on the structure and surface of the pore space and biocompatibility of composite materials. Administration of calcium hydroxyapatite crystals was followed by a significant decrease in the size of pores and appearance of water-soluble fractions, which inhibited the activity of cells. However, treatment with amorphous nanodispersed calcium hydroxyapatite increased the biocompatibility and adhesiveness of materials for mesenchymal stem cells. The pore space and mechanical characteristics of materials obtained with amorphous nanodispersed calcium hydroxyapatite were similar to the properties of natural bone. Moreover, these materials surpassed titanium-cobalt allows in biocompatibility. Our results indicate that the introduction of amorphous nanodispersed calcium hydroxyapatite into the reaction mixture during selfpropagating high-temperature synthesis has a modifying effect on the pore space of composite materials and increases their biocompatibility and adhesiveness for cells. We conclude that these materials may be used as a carrier of stem cells and progenitor cells in hybrid implants.
机译:我们提出了一种新方法,通过自蔓延高温合成方法,可以提高由钛和钴合成的多孔材料的生物相容性。该方法建议将羟基磷灰石钙引入反应混合物中。将羟基磷灰石钙加入反应混合物中对复合材料的孔空间的结构和表面以及生物相容性具有改性作用。施用羟基磷灰石钙晶体后,孔的大小和水溶性部分的出现显着减少,这抑制了细胞的活性。然而,用无定形的纳米分散的羟基磷灰石钙处理增加了间充质干细胞材料的生物相容性和粘附性。用无定形纳米分散的羟基磷灰石钙获得的材料的孔空间和机械特性与天然骨的特性相似。而且,这些材料超过钛-钴允许生物相容性。我们的结果表明,在自蔓延高温合成过程中,将无定形的纳米分散羟基磷灰石钙引入反应混合物中,对复合材料的孔空间产生了改性作用,并增加了其生物相容性和对细胞的粘附性。我们得出的结论是,这些材料可用作杂种植入物中干细胞和祖细胞的载体。

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