Hydrophobic nanofibers: a peptide-based functional anti-fouling material

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Abstract

Functional bioinspired materials have been developed by molecular self-assembly of a hydrophobic peptide. Two analogue peptides containing hydrophobic l-alanine, α-aminoisobutyric acid (Aib), l-phenylalanine and l-tyrosine deliver different supramolecular structures and functions. Peptide 1 containing l-phenylalanine adopts a β-turn conformation and self-assembles through intermolecular hydrogen bonds to form a supramolecular hydrophobic sheet-like structure. But peptide 2 with l-tyrosine adopts kink-like conformations and self-assembles to form a supramolecular hydrogen bonded helix-like architecture. Irrespective of the presence of the same peptide backbone conformation, only the side chain hydroxyl functional group has introduced a huge change in self-assembly pattern and function. The hydrophobic peptide 1 further self-assembled to form slippery nanofibers. The resulting surfaces show anti-sticking effects against water and exhibit anti-fouling properties, like inhibiting the growth of Escherichia coli.

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Hati, K. C., Kumar, S., Mondal, S., Singh, S., Shit, A., Nandi, S. K., & Haldar, D. (2022). Hydrophobic nanofibers: a peptide-based functional anti-fouling material. Materials Advances, 3(10), 4194–4199. https://doi.org/10.1039/d2ma00084a

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