Effect of the concentration of protein and nanoparticles on the structure of biohybrid nanocomposites

Jozefína Majorošová, Martin A. Schroer, Natália Tomašovičová*, Marianna Batková, Po Sheng Hu*, Martina Kubovčíková, Dmitri I. Svergun, Peter Kopčanský

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

We present colloidal nanocomposites formed by incorporating magnetite Fe3O4 nanoparticles (MNPs) with lysozyme amyloid fibrils (LAFs). Preparation of two types of solutions, with and without addition of salt, was carried out to elucidate the structure of MNPs-incorporated fibrillary nanocomposites and to study the effect of the presence of salt on the stability of the nanocomposites. The structural morphology of the LAFs and their interaction with MNPs were analyzed by atomic force microscopy and small-angle x-ray scattering measurements. The results indicate that conformational properties of the fibrils are dependent on the concentration of protein, and the precise ratio of the concentration of the protein and MNPs is crucially important for the stability of the fibrillary nanocomposites. Our results confirm that despite the change in fibrillary morphology induced by the varying concentration of the protein, the adsorption of MNPs on the surface of LAF is morphologically independent. Moreover, most importantly, the samples containing salt have excellent stability for up to 1 year of shelf-life.

Original languageEnglish
Article numbere23342
JournalBiopolymers
Volume111
Issue number2
DOIs
StateAccepted/In press - Dec 2019

Keywords

  • amyloid fibrils
  • lysozyme
  • magnetic nanoparticles

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