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SELF-ASSEMBLY OF PEPTIDE AMPHIPHILES: MOLECULARLY ENGINEERED BIONANOMATERIALS

机译:肽两亲的自我组装:分子工程的小硫代材料

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Molecular self-assembly is ubiquitous in nature and has now emerged as a new approach in chemical synthesis, engineering, nanotechnology, polymer science, and materials. Molecular self-assembly has been attracting increasing interest from the scientific community in the recent years due to its importance in understanding biology and a variety of diseases at the molecular level. In the last few years, considerable advances have been made in the use of peptides as building blocks to produce biological materials for wide range of applications, including fabricating novel supra-molecular structures and scaffolding for tissue repair. Today, the study of biological self-assembly systems represent a significant advance in the molecular engineering and is a rapidly growing scientific and engineering field that crosses the boundaries of existing disciplines. Many self-assembling systems are ranged from bi- and tri-block copolymers to complex DNA structures as well as simple and complex proteins and peptides. The attractiveness of such bottom-up processes lies in their capability to build uniform, functional units or arrays and the possibility to exploit such structures at meso- and macroscopic scale for life and non-life science applications.
机译:分子自我组装本质上无处不在,现在已经成为化学合成,工程,纳米技术,聚合物科学和材料的新方法。由于其在理解生物学和各种疾病的分子水平的重要性,分子自我组装在近年来近年来近年来越来越感兴趣。在过去的几年中,在使用肽作为构建块来生产具有广泛应用的生物材料的相当大的进步,包括制造新的Supra分子结构和用于组织修复的脚手架。如今,生物自组装系统的研究代表了分子工程中的显着进展,是一种快速增长的科学和工程领域,越过现有学科的界限。许多自组装系统从双嵌段和三嵌段共聚物到复杂的DNA结构以及简单且复杂的蛋白质和肽。这种自下而上过程的吸引力在于它们的能力,以建立均匀,功能单元或阵列以及利用中间和非生命科学应用的中间和宏观规模利用这种结构的可能性。

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