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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Influence of Surrounding Cations on the Surface Degradation of Magnesium Alloy Implants under a Compressive Pressure
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Influence of Surrounding Cations on the Surface Degradation of Magnesium Alloy Implants under a Compressive Pressure

机译:周围阳离子对压缩压力下镁合金植入物表面降解的影响

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摘要

The effect of cations in the surrounding solutions on the surface degradation of magnesium alloys, a well-recognized biodegradable biomaterial, has been neglected compared with the effect of anions in the past. To better simulate the compressive environment where magnesium alloys are implanted into the body as a cardiovascular stent, a device is designed and employed in the test so that a pressure, equivalent to the vascular pressure, can be directly applied to the magnesium alloy implants when the alloys are immersed in a medium containing one of the cations (K+, Na+, Ca2+, and Mg2+) found in blood plasma. The surface degradation behaviors of the magnesium alloys in the immersion test are then investigated using hydrogen evolution, mass loss determination, electron microscopy, pH value, and potentiodynamic measurements. The cations are found to promote the surface degradation of the magnesium alloys with the degree decreased in the order of K+ > Na+ > Ca2+ > Mg2+. The possible mechanism of the effects of the cations on the surface degradation is also discussed. This study will allow us to predict the surface degradation of magnesium alloys in the physiological environment and to promote the further development of magnesium alloys as biodegradable biomaterials.
机译:与过去的阴离子作用相比,人们已经忽略了周围溶液中阳离子对镁合金(一种公认的可生物降解的生物材料)的表面降解的影响。为了更好地模拟将镁合金作为心血管支架植入体内的压缩环境,在测试中设计并使用了一种装置,使得当血管形成时,可以将等于血管压力的压力直接施加到镁合金植入物上。将合金浸入含有血浆中阳离子(K +,Na +,Ca2 +和Mg2 +)之一的介质中。然后使用氢析出,质量损失测定,电子显微镜,pH值和电位动力学测量研究浸入测试中镁合金的表面降解行为。发现阳离子以K +> Na +> Ca 2+> Mg 2+的顺序降低程度促进镁合金的表面降解。还讨论了阳离子对表面降解的影响的可能机理。这项研究将使我们能够预测镁合金在生理环境中的表面降解,并促进镁合金作为可生物降解的生物材料的进一步发展。

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