Department of Nanotechnology and Advanced Materials, Bioengineering Research Group, Materials and Energy Research Center (MERC), Tehran, Iran.
Cellular and Molecular Research Center, Iran University of Medical Sciences, Tehran, Iran.
J Cell Physiol. 2019 Apr;234(4):3321-3335. doi: 10.1002/jcp.27292. Epub 2018 Sep 6.
In today's medicine world, alumina-based biomaterials owing to their excellent biomechanical, and biocompatibility properties play a key role in biomedical engineering. However, the literature still suffers from not having a valid database regarding the protein adsorption and subsequently cell responses to these surfaces. Proteins by adsorption on biomaterials surfaces start interpreting the construction and also arranging the biomaterials surfaces into a biological language. Hence, the main concentration of this review is on the protein adsorption and subsequently cell responses to alumina's surface, which has a wide range biomedical applications, especially in dentistry and orthopedic applications. In the presented review article, the general principles of foreign body response mechanisms, and also the role of adsorbed proteins as key players in starting interactions between cells and alumina-based biomaterials will be discussed in detail. In addition, the essential physicochemical, and mechanical properties of alumina surfaces which significantly impact on proteins and cells responses as well as the recent studies that have focused on the biocompatibility of alumina will be given. An in depth understanding of how the immune system interacts with the surface of alumina could prove the pivotal importance of the biocompatibility of alumina on its success in tissue engineering after implantation in body.
在当今的医学领域,基于氧化铝的生物材料由于其优异的生物力学和生物相容性特性,在生物医学工程中发挥着关键作用。然而,文献中仍然缺乏关于这些表面的蛋白质吸附以及随后的细胞反应的有效数据库。蛋白质通过在生物材料表面的吸附,开始解释结构,并将生物材料表面转化为生物语言。因此,本综述的主要重点是氧化铝表面的蛋白质吸附以及随后的细胞反应,氧化铝具有广泛的生物医学应用,特别是在牙科和骨科应用中。在本文献综述中,将详细讨论异物反应机制的一般原理,以及吸附蛋白作为细胞与基于氧化铝的生物材料之间相互作用起点的关键因素的作用。此外,还将介绍氧化铝表面的重要物理化学和机械性能,这些性能对蛋白质和细胞反应有重大影响,以及最近集中研究氧化铝生物相容性的研究。深入了解免疫系统如何与氧化铝表面相互作用,可以证明氧化铝在体内植入后的组织工程中的成功与其生物相容性的至关重要性。