Au<sup>3+</sup>-Induced gel network formation of proteins.

Schijven, Laura M I; Saggiomo, Vittorio; Velders, Aldrik H; Bitter, Johannes H; Nikiforidis, Constantinos V · Soft Matter · 2021

basic_science · Level V

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Abstract

The formation of protein gel networks in aqueous systems is a result of protein intermolecular interactions after an energy input, like heating. In this research, we report that a redox reaction between Au<sup>3+</sup> ions and proteins can also lead to the formation of a protein gel network. Amino acids, like cysteine and tyrosine, get oxidized and form covalent bonds with neighboring protein molecules, while Au<sup>3+</sup> ions get reduced to Au<sup>+</sup> and Au<sup>0</sup>, nucleate and form gold nanoparticles. The protein gel network formation occurs within 2 h at room temperature and can be tuned by varying Au<sup>3+</sup>/protein ratio and accelerated by increasing the incubation temperature. The proposed Au<sup>3+</sup>-induced gel network formation was applied to different proteins, like egg yolk high-density lipoprotein, bovine serum albumin and whey protein. This research opens new insights for the investigation of the metal-protein interactions and may aid in the design of novel hybrid-soft nanocomposite materials.

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