Castner David G
National ESCA and Surface Analysis Center for Biomedical Problems, Molecular Engineering and Sciences Institute, Departments of Bioengineering and Chemical Engineering, University of Washington, Box 351653, Seattle, Washington 98195-1653.
Biointerphases. 2017 Apr 24;12(2):02C301. doi: 10.1116/1.4982169.
This review describes some of the major advances made in biomedical surface analysis over the past 30-40 years. Starting from a single technique analysis of homogeneous surfaces, it has been developed into a complementary, multitechnique approach for obtaining detailed, comprehensive information about a wide range of surfaces and interfaces of interest to the biomedical community. Significant advances have been made in each surface analysis technique, as well as how the techniques are combined to provide detailed information about biological surfaces and interfaces. The driving force for these advances has been that the surface of a biomaterial is the interface between the biological environment and the biomaterial, and so, the state-of-the-art in instrumentation, experimental protocols, and data analysis methods need to be developed so that the detailed surface structure and composition of biomedical devices can be determined and related to their biological performance. Examples of these advances, as well as areas for future developments, are described for immobilized proteins, complex biomedical surfaces, nanoparticles, and 2D/3D imaging of biological materials.
本综述描述了过去30至40年生物医学表面分析取得的一些重大进展。从对均匀表面的单一技术分析开始,它已发展成为一种互补的多技术方法,用于获取有关生物医学界感兴趣的广泛表面和界面的详细、全面信息。每种表面分析技术都取得了重大进展,以及这些技术如何结合以提供有关生物表面和界面的详细信息。这些进展的驱动力在于生物材料的表面是生物环境与生物材料之间的界面,因此,需要开发仪器、实验方案和数据分析方法的最新技术,以便能够确定生物医学设备的详细表面结构和组成,并将其与它们的生物学性能相关联。针对固定化蛋白质、复杂生物医学表面、纳米颗粒以及生物材料的二维/三维成像,描述了这些进展的实例以及未来的发展领域。