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Systematic approach to characterize the dynamics of protein adsorption on the surface of biomaterials using proteomics

机译:用蛋白质组学表征生物材料表面蛋白质吸附动态的系统方法

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摘要

Protein adsorption on biomaterial surfaces has been investigated in the development of protein-repellent implantable devices. While the study of the adsorption of a single protein have produced valuable insights of the role of specific proteins in the biological responses to biomaterials, a systematic high throughput screening method is needed to gain more comprehensive understanding of such a complex process, mainly because biomaterials are exposed to protein mixtures when implanted in the human body. To further advance our knowledge of the dynamics of protein adsorption/desorption at interfaces between proteins and solid surfaces, proteomic technologies have been explored to determine relationships between adsorbed proteins on the surfaces and subsequent biological responses. In this review, we will briefly describe the protein adsorption process and proteomics technologies and focus on subsequent biological responses to biomaterials such as blood/biomaterial interactions, biocompatibility, and cell behavior, to obtain more comprehensive understanding of the process for the development of improved biomaterials. We also highlight a number of challenges of contemporary proteomics technologies and future perspectives to advance our knowledge of protein adsorption/desorption dynamics on the surfaces of biomaterials.
机译:在蛋白质排斥性植入装置的发育中研究了对生物材料表面的蛋白质吸附。虽然对单一蛋白质的吸附的研究产生了有价值的蛋白质在生物材料的生物反应中的作用,但需要一种系统的高通量筛选方法来获得更全面的了解这种复杂的过程,主要是因为生物材料是当植入人体时暴露于蛋白质混合物。为了进一步推进我们对蛋白质和固体表面之间的界面的蛋白质吸附/解吸的动态,已经探讨了蛋白质组学技术以确定表面上吸附蛋白质之间的关系和随后的生物反应。在本文中,我们将简要描述蛋白质吸附过程和蛋白质组学技术,并专注于随后对生物材料的生物反应,例如血液/生物材料相互作用,生物相容性和细胞行为,以获得对改进生物材料的发展过程的更全面的理解。我们还突出了当代蛋白质组学技术的许多挑战和未来的观点,以推动我们对生物材料表面上的蛋白质吸附/解吸动力学的知识。

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