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Minimalistic peptide supramolecular co-assembly: expanding the conformational space for nanotechnology

期刊

CHEMICAL SOCIETY REVIEWS
卷 47, 期 10, 页码 3406-3420

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7cs00827a

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资金

  1. Israeli National Nanotechnology Initiative
  2. Helmsley Charitable Trust for a Focal Technology Area on Nanomedicine for Personalized Theranostics
  3. European Research Council under the European Union's Horizon research and innovation program [694426]
  4. Center for Nanoscience and Nanotechnology of Tel Aviv University

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Molecular self-assembly is a ubiquitous process in nature and central to bottom-up nanotechnology. In particular, the organization of peptide building blocks into ordered supramolecular structures has gained much interest due to the unique properties of the products, including biocompatibility, chemical and structural diversity, robustness and ease of large-scale synthesis. In addition, peptides, as short as dipeptides, contain all the molecular information needed to spontaneously form well-ordered structures at both the nano- and the micro-scale. Therefore, peptide supramolecular assembly has been effectively utilized to produce novel materials with tailored properties for various applications in the fields of material science, engineering, medicine, and biology. To further expand the conformational space of peptide assemblies in terms of structural and functional complexity, multicomponent (two or more) peptide supramolecular co-assembly has recently evolved as a promising extended approach, similar to the structural diversity of natural sequence-defined biopolymers (proteins) as well as of synthetic covalent co-polymers. The use of this methodology was recently demonstrated in various applications, such as nanostructure physical dimension control, the creation of non-canonical complex topologies, mechanical strength modulation, the design of light harvesting soft materials, fabrication of electrically conducting devices, induced fluorescence, enzymatic catalysis and tissue engineering. In light of these significant advancements in the field of peptide supramolecular co-assembly in the last few years, in this tutorial review, we provide an updated overview and future prospects of this emerging subject.

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