Buehler Markus J, Yung Yu Ching
Laboratory for Atomistic and Molecular Mechanics, Department of Civil and Environmental Engineering, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
Nat Mater. 2009 Mar;8(3):175-88. doi: 10.1038/nmat2387.
Biological protein materials feature hierarchical structures that make up a diverse range of physiological materials. The analysis of protein materials is an emerging field that uses the relationships between biological structures, processes and properties to probe deformation and failure phenomena at the molecular and microscopic level. Here we discuss how advanced experimental, computational and theoretical methods can be used to assess structure-process-property relations and to monitor and predict mechanisms associated with failure of protein materials. Case studies are presented to examine failure phenomena in the progression of disease. From this materials science perspective, a de novo basis for understanding biological processes can be used to develop new approaches for treating medical disorders. We highlight opportunities to use knowledge gained from the integration of multiple scales with physical, biological and chemical concepts for potential applications in materials design and nanotechnology.
生物蛋白质材料具有构成各种生理材料的层次结构。蛋白质材料分析是一个新兴领域,它利用生物结构、过程和性质之间的关系来探究分子和微观层面的变形与失效现象。在此,我们讨论如何运用先进的实验、计算和理论方法来评估结构-过程-性质关系,并监测和预测与蛋白质材料失效相关的机制。通过案例研究来考察疾病进展过程中的失效现象。从这种材料科学的角度来看,理解生物过程的全新基础可用于开发治疗医学疾病的新方法。我们强调利用从多尺度与物理、生物和化学概念整合中获得的知识,在材料设计和纳米技术中潜在应用的机会。