Comparison of the self‐assembly and cytocompatibility of conjugates of Fmoc (9‐fluorenylmethoxycarbonyl) with hydrophobic, aromatic, or charged amino acids

Author:

Castelletto Valeria1,de Mello Lucas12,da Silva Emerson Rodrigo2ORCID,Seitsonen Jani3,Hamley Ian W.1ORCID

Affiliation:

1. School of Chemistry, Food Biosciences and Pharmacy University of Reading, Whiteknights Reading UK

2. Departamento de Biofísica Universidade Federal de São Paulo São Paulo Brazil

3. Nanomicroscopy Center Aalto University Espoo Finland

Abstract

The self‐assembly in aqueous solution of three Fmoc‐amino acids with hydrophobic (aliphatic or aromatic, alanine or phenylalanine) or hydrophilic cationic residues (arginine) is compared. The critical aggregation concentrations were obtained using intrinsic fluorescence or fluorescence probe measurements, and conformation was probed using circular dichroism spectroscopy. Self‐assembled nanostructures were imaged using cryo‐transmission electron microscopy and small‐angle X‐ray scattering (SAXS). Fmoc‐Ala is found to form remarkable structures comprising extended fibril‐like objects nucleating from spherical cores. In contrast, Fmoc‐Arg self‐assembles into plate‐like crystals. Fmoc‐Phe forms extended structures, in a mixture of straight and twisted fibrils coexisting with nanotapes. Spontaneous flow alignment of solutions of Fmoc‐Phe assemblies is observed by SAXS. The cytocompatibility of the three Fmoc‐amino acids was also compared via MTT [3‐(4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyltetrazolium bromide] mitochondrial activity assays. All three Fmoc‐amino acids are cytocompatible with L929 fibroblasts at low concentration, and Fmoc‐Arg shows cell viability up to comparatively high concentration (0.63 mM).

Funder

Engineering and Physical Sciences Research Council

Publisher

Wiley

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