Advances on Biomedical Titanium Surface Interactions

M. Bousnaki, P. Koidis
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引用次数: 3

Abstract

When used as an implanted material, titanium (Ti) surface controls the subsequent biological reactions and leads to tissue integration. Cells interactions with the surface, through a protein layer that is being formed from the moment Ti surface comes in contact with blood and its components, and indeed this protein layer formation, are regulated by surface properties such as topography, chemistry, charge and surface energy. Currently, the implementation of nanotechnology, in an attempt to support mimicking the natural features of extracellular matrix, has provided novel approaches for understanding and translating surface mechanisms whose modification and tailoring are expected to lead to enhanced cell activity and improved integration. Despite the fact that there has been extensive research on this subject, the sequence of interactions that take place instantly after the exposure of the implanted material into the biologic microenvironment are not well documented and need further investigation as well as the optimization of characteristics of Ti surface. This review, including theoretical and experimental studies, summarizes some of the latest advances on the Ti surface concerning modifications on surface properties and how these modifications affect biomolecular reactions and also attempts to present the initial adsorption mechanism of water and protein molecules to the surface.
生物医学钛表面相互作用研究进展
当用作植入材料时,钛(Ti)表面控制随后的生物反应并导致组织整合。细胞与表面的相互作用是通过蛋白质层形成的,这种蛋白质层是在钛表面与血液及其成分接触的那一刻形成的,实际上,这种蛋白质层的形成是由表面特性(如地形、化学、电荷和表面能)调节的。目前,纳米技术的实施,试图支持模拟细胞外基质的自然特征,为理解和翻译表面机制提供了新的方法,其修饰和剪裁有望导致增强细胞活性和改善整合。尽管在这方面已经有了广泛的研究,但植入材料暴露于生物微环境后立即发生的相互作用的顺序尚未得到很好的记录,需要进一步的研究以及Ti表面特性的优化。本文从理论和实验两方面综述了钛表面改性及其对生物分子反应的影响,并试图揭示水分子和蛋白质分子在钛表面的初始吸附机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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