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钛合金β稳定元素的生物相容性

Biocompatibility of beta-stabilizing elements of titanium alloys.

作者信息

Eisenbarth E, Velten D, Müller M, Thull R, Breme J

机构信息

Universität des Saarlandes, Lehrstuhl für metallische Werkstoffe, D-66041 Saarbrücken, Germany.

出版信息

Biomaterials. 2004 Nov;25(26):5705-13. doi: 10.1016/j.biomaterials.2004.01.021.

Abstract

In comparison to the presently used alpha + beta titanium alloys for biomedical applications, beta-titanium alloys have many advantageous mechanical properties, such as an improved wear resistance, a high elasticity and an excellent cold and hot formability. This will promote their future increased application as materials for orthopaedic joint replacements. Not all elements with beta-stabilizing properties in titanium alloys are suitable for biomaterial applications-corrosion and wear processes cause a release of these alloying elements to the surrounding tissue. In this investigation, the biocompability of alloying elements for beta- and near beta-titanium alloys was tested in order to estimate their suitability for biomaterial components. Titanium (grade 2) and the implant steel X2CrNiMo18153 (AISI 316 L) were tested as reference materials. The investigation included the corrosion properties of the elements, proliferation, mitochondrial activity, cell morphology and the size of MC3T3-E1 cells and GM7373 cells after 7 days incubation in direct contact with polished slices of the metals. The statistical significance was considered by Weir-test and Lord-test (alpha = 0.05). The biocompatibility range of the investigated metals is (decreasing biocompatibility): niobium-tantalum, titanium, zirconium-aluminium-316 L-molybdenum.

摘要

与目前用于生物医学应用的α+β钛合金相比,β钛合金具有许多有利的机械性能,如改善的耐磨性、高弹性以及优异的冷热成型性。这将推动它们未来作为骨科关节置换材料的应用增加。并非钛合金中所有具有β稳定特性的元素都适用于生物材料应用——腐蚀和磨损过程会导致这些合金元素释放到周围组织中。在本研究中,测试了β钛合金和近β钛合金中合金元素的生物相容性,以评估它们作为生物材料部件的适用性。测试了钛(2级)和植入钢X2CrNiMo18153(AISI 316 L)作为参考材料。研究包括元素的腐蚀性能、增殖、线粒体活性、细胞形态以及MC3T3-E1细胞和GM7373细胞在与金属抛光片直接接触培养7天后的大小。通过Weir检验和Lord检验(α=0.05)考虑统计学显著性。所研究金属的生物相容性范围为(生物相容性降低):铌-钽、钛、锆-铝-316 L-钼。

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