Issue 16, 2013

Towards lysozyme nanotube and 3D hybrid self-assembly

Abstract

We report lysozyme self-assembly into nanotubes, under the effect of hydrolysis at pH 2 and 90 °C. We resolve the final steps of the fibrillation pathway, entailing the closure of multi-stranded helical ribbons into nanotubes, and we provide evidence of β-sheet arrangement within the nanotubes, demonstrating amyloid-like aggregation. Addition of chloroauric acid to the self-assembled structures can lead to generation of either gold single crystal nanoplatelets or gold nanoparticles (when a reducing agent is added) decorating the nanotube and ribbon surfaces. The crystal-based organic–inorganic hybrids further assemble into 3D “sandwiched” structures.

Graphical abstract: Towards lysozyme nanotube and 3D hybrid self-assembly

Supplementary files

Article information

Article type
Communication
Submitted
30 Apr 2013
Accepted
11 Jun 2013
First published
14 Jun 2013

Nanoscale, 2013,5, 7197-7201

Towards lysozyme nanotube and 3D hybrid self-assembly

C. Lara, S. Handschin and R. Mezzenga, Nanoscale, 2013, 5, 7197 DOI: 10.1039/C3NR02194G

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