Department of Pharmacy and Research Centre on Bioactive Peptides (CIRPeB), University of Naples "Federico II", Via Mezzocannone 16, Naples, 80134, Italy.
Institute of Biostructures and Bioimaging (IBB), CNR, Via Mezzocannone 16, 80134, Naples, Italy.
Chemistry. 2021 Oct 25;27(60):14886-14898. doi: 10.1002/chem.202102007. Epub 2021 Oct 1.
Peptide-based hydrogels, originated by multiscale self-assembling phenomenon, have been proposed as multivalent tools in different technological areas. Structural studies and molecular dynamics simulations pointed out the capability of completely aromatic peptides to gelificate if hydrophilic and hydrophobic forces are opportunely balanced. Here, the effect produced by the introduction of a Cys residue in the heteroaromatic sequence of (FY)3 and in its PEGylated variant was evaluated. The physicochemical characterization indicates that both FYFCFYF and PEG8-FYFCFYF are able to self-assemble in supramolecular nanostructures whose basic cross-β motif resembles the one detected in the ancestor (FY)3 assemblies. However, gelification occurs only for FYFCFYF at a concentration of 1.5 wt%. After cross-linking of cysteine residues, the hydrogel undergoes to an improvement of the rigidity compared to the parent (FY)3 assemblies as suggested by the storage modulus (G') that increases from 970 to 3360 Pa. The mechanical properties of FYFCFYF are compatible with its potential application in bone tissue regeneration. Moreover, the avalaibility of a Cys residue in the middle of the peptide sequence could allow the hydrogel derivatization with targeting moieties or with biologically relevant molecules.
基于肽的水凝胶源于多尺度自组装现象,已被提议作为不同技术领域的多价工具。结构研究和分子动力学模拟指出,如果适当平衡亲水性和疏水性力,完全芳香族肽有凝胶化的能力。在这里,评估了在(FY)3 的杂芳环序列及其聚乙二醇化变体中引入 Cys 残基的效果。物理化学特性表明,FYFCFYF 和 PEG8-FYFCFYF 都能够在超分子纳米结构中自组装,其基本的交叉-β基序类似于在祖先(FY)3 组装中检测到的基序。然而,只有 FYFCFYF 在 1.5wt%的浓度下才能凝胶化。在半胱氨酸残基交联后,水凝胶的刚性与母体(FY)3 组装相比有所提高,这表明储能模量(G')从 970 增加到 3360 Pa。FYFCFYF 的机械性能与其在骨组织再生中的潜在应用兼容。此外,在肽序列中间存在 Cys 残基,可以允许水凝胶与靶向部分或与生物相关分子进行衍生化。