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Self-assembly of Functional Nanostructures by Short Helical Peptide Building Blocks

机译:短螺旋肽构建基块自组装功能纳米结构。

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摘要

The self-assembly of short peptide building blocks into well-ordered nanostructures is a key direction in bionanotechnology. The formation of β-sheet organizations by short peptides is well explored, leading to the development of a wide range of functional assemblies. Likewise, many natu-ral proteinaceous materials, such as silk and amyloid fibrils, are based on β-sheet structures. In con-trast, collagen, the most abundant protein in mammals, is based on helical arrangement. Similar to β-sheet structures, short helical peptides have been recently discovered to possess a diverse set of func-tionalities with the potential to fabricate artificial self-assembling materials. Here, we outline the func-tional roles of self-assembled nanostructures formed by short helical peptides and their potential as artificial materials. We focus on the association between self-assembled mesoscale structures and their material function and demonstrate the way by which this class of building blocks bears the potential for diverse applications, such as the future fabrication of smart devices.
机译:短肽构件的自组装成有序的纳米结构是生物纳米技术的关键方向。充分探索了由短肽形成的β-sheet组织,从而导致了广泛的功能装配的发展。同样,许多天然蛋白质材料,例如丝绸和淀粉样原纤维,都是基于β-折叠结构的。相反,胶原蛋白(哺乳动物中最丰富的蛋白质)是基于螺旋排列的。与β-折叠结构相似,最近发现短螺旋肽具有多种功能,具有制造人工自组装材料的潜力。在这里,我们概述了由短螺旋肽形成的自组装纳米结构的功能及其作为人工材料的潜力。我们关注于自组装中尺度结构与其材料功能之间的关联,并演示了此类构建基块具有多种应用潜力的方式,例如未来智能设备的制造。

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