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首页> 外文期刊>Journal of biomedical materials research, Part A >Potential of FeAlCr Intermetallics Reinforced With Nanoparticles as New Biomaterials for Medical Devices
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Potential of FeAlCr Intermetallics Reinforced With Nanoparticles as New Biomaterials for Medical Devices

机译:纳米颗粒增强FeAlCr金属间化合物作为医疗器械新生物材料的潜力

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Novel FeAlCr oxide dispersion strengthened intermetallics that are processed by powder metallurgy have been developed as potential biomaterials. The alloys exhibit a small grain size and a fine dispersion of yttria provides the material with a high yield strength and depending on the alloy composition good ductility (up to 5 percent). The biocompatibility of the alloy was assessed in comparison with commercial alumina. Saos-2 osteoblast-like cells were either challenged with mechanically alloyed particles, or seeded onto solid samples. Viability and proliferation of cells were substantially unaffected by the presence of a high concentration of particles (1 mg/mL). Solid samples of novel FeAlCr intermetallic have shown a good biocompatibility in vitro, often approaching the behavior of materials well known for their biological acceptance (e.g. alumina). It has been found that osteoblasts are able to produce ALP, a specific marker of cells with bone-forming activity. In this respect, ALUSI alloys hold the promise to be suitable substrate for bone integration. The finding of no cytotoxic effect in the presence of the alloy particles is a reliable proof of the absence of acute toxicity of the material.
机译:通过粉末冶金处理的新型FeAlCr氧化物弥散强化金属间化合物已被开发为潜在的生物材料。合金具有较小的晶粒尺寸,氧化钇的细小分散为材料提供了高屈服强度,并且根据合金成分的不同,其延展性也很好(高达5%)。与商用氧化铝相比,评估了合金的生物相容性。用机械合金化的颗粒攻击Saos-2成骨细胞样细胞,或接种到固体样品上。细胞的活力和增殖基本上不受高浓度颗粒(1 mg / mL)的存在的影响。新型FeAlCr金属间化合物的固体样品在体外显示出良好的生物相容性,通常接近以其生物学接受性而闻名的材料的行为(例如氧化铝)。已经发现,成骨细胞能够产生ALP,ALP是具有骨形成活性的细胞的特定标志。在这方面,ALUSI合金有望成为适合骨整合的基质。在合金颗粒存在下没有细胞毒性作用的发现是该材料不存在急性毒性的可靠证据。

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