Klok Oksana, Igual Munoz Anna, Mischler Stefano
Tribology and Interfacial Chemistry Group, Ecole Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne, Switzerland.
Materials (Basel). 2020 Oct 29;13(21):4858. doi: 10.3390/ma13214858.
Understanding the interactions between biomedical alloys and body fluids is of importance for the successful and safe performance of implanted devices. Albumin, as the first protein that comes in contact with an implant surface, can determine the biocompatibility of biomedical alloys. The interaction of albumin with biomedical alloys is a complex process influenced by numerous factors. This literature overview aims at presenting the current understanding of the mechanisms of serum albumin (both Bovine Serum Albumin, BSA, and Human Serum Albumin, HSA) interactions with biomedical alloys, considering only those research works that present a mechanistic description of the involved phenomena. Widely used biomedical alloys, such as 316L steel, CoCrMo and Titanium alloys are specifically addressed in this overview. Considering the literature analysis, four albumin-related phenomena can be distinguished: adsorption, reduction, precipitation, and protein-metal binding. The experimental techniques used to understand and quantify those phenomena are described together with the studied parameters influencing them. The crucial effect of the electrochemical potential on those phenomena is highlighted. The effect of the albumin-related phenomena on corrosion behavior of biomedical materials also is discussed.
了解生物医学合金与体液之间的相互作用对于植入设备的成功与安全运行至关重要。白蛋白作为最先接触植入物表面的蛋白质,能够决定生物医学合金的生物相容性。白蛋白与生物医学合金的相互作用是一个受众多因素影响的复杂过程。这篇文献综述旨在阐述目前对血清白蛋白(包括牛血清白蛋白,即BSA,和人血清白蛋白,即HSA)与生物医学合金相互作用机制的理解,仅考虑那些对相关现象进行机理描述的研究工作。本综述特别讨论了广泛使用的生物医学合金,如316L钢、钴铬钼合金和钛合金。基于文献分析,可区分出四种与白蛋白相关的现象:吸附、还原、沉淀以及蛋白质 - 金属结合。用于理解和量化这些现象的实验技术连同影响它们的研究参数一同进行了描述。强调了电化学势对这些现象的关键作用。还讨论了与白蛋白相关的现象对生物医学材料腐蚀行为的影响。