Institute of Materials Science, Leibniz Universität Hannover, Hannover, Germany.
Acta Biomater. 2012 Oct;8(10):3852-64. doi: 10.1016/j.actbio.2012.05.024. Epub 2012 Jun 5.
The aim of this study is to investigate and demonstrate the mechanical and corrosive characteristics of the neodymium-containing magnesium alloy MgNd2 (Nd2), which can be used as a resorbable implant material, especially in the field of stenting applications. To determine the mechanical characteristics of Nd2, tensile and compression tests were initially carried out in the hot extruded state. Here a unique elongation ratio (~30%) of the alloy could be observed. Subsequent T5 and T6 heat treatments were arranged to reveal their effect on the alloy's strengths and elongation values. The general degradation behaviour of Nd2 in a 0.9% NaCl solution was investigated by means of polarization curves and hydrogen evolution. In addition to this, by using various in vivo parameters, a corrosion environment was established to determine the alloy's degradation in vitro. Here, the mass loss per day in (MgF(2) and Bioglass)-coated and uncoated states and the corresponding maximum forces resulting from subsequent three-point bending tests revealed slow and steady corrosion behaviour. The cell viability and proliferation tests carried out on L-929 and MSC-P5 cells also showed good results. The mechanical and corrosive characteristics determined, as well as the in vitro test results obtained within the scope of this study, led to the development and successful in vivo testing of an MgF(2)-coated Nd2 mucosa stent which was introduced as an appropriate resorbable application.
本研究旨在探讨和展示含钕镁合金 MgNd2(Nd2)的力学和腐蚀性特征,该合金可用作可吸收植入物材料,特别是在支架应用领域。为了确定 Nd2 的力学特性,首先在热挤压状态下进行了拉伸和压缩试验。在此,可以观察到合金独特的伸长率(约 30%)。随后进行了 T5 和 T6 热处理,以研究它们对合金强度和伸长率的影响。通过极化曲线和氢析出研究了 Nd2 在 0.9%NaCl 溶液中的一般降解行为。此外,通过使用各种体内参数,建立了腐蚀环境,以确定合金在体外的降解情况。在这里,涂层和未涂层状态下每天的质量损失(MgF2 和 Bioglass)以及随后三点弯曲试验产生的最大力揭示了缓慢而稳定的腐蚀行为。在 L-929 和 MSC-P5 细胞上进行的细胞活力和增殖试验也取得了良好的结果。本研究范围内确定的力学和腐蚀性特征以及体外试验结果,导致了 MgF2 涂层 Nd2 黏膜支架的开发和成功的体内试验,该支架被引入为一种合适的可吸收应用。