| Literature DB >> 26555139 |
Ralph Appel1,2, Jonas Fuchs3, Sara M Tyrrell3, Peter A Korevaar4, Marc C A Stuart5, Ilja K Voets4,6, Monika Schönhoff3, Pol Besenius7,8.
Abstract
A unique example of supramolecular polymerisation in water based on monomers with nanomolar affinities, which yield rod-like materials with extraordinarily high thermodynamic stability, yet of finite length, is reported. A small library of charge-neutral dendritic peptide amphiphiles was prepared, with a branched nonaphenylalanine-based core that was conjugated to hydrophilic dendrons of variable steric demand. Below a critical size of the dendron, the monomers assemble into nanorod-like polymers, whereas for larger dendritic side chains frustrated growth into near isotropic particles is observed. The supramolecular morphologies observed by electron microscopy, X-ray scattering and diffusion NMR spectroscopy studies are in agreement with the mechanistic insights obtained from fitting polymerisation profiles: non-cooperative isodesmic growth leads to degrees of polymerisation that match the experimentally determined nanorod contour lengths of close to 70 nm. The reported designs for aqueous self-assembly into well-defined anisotropic particles has promising potential for biomedical applications and the development of functional supramolecular biomaterials, with emerging evidence that anisotropic shapes in carrier design outperform conventional isotropic materials for targeted imaging and therapy.Entities:
Keywords: amphiphiles; nanomaterials; polymers; self-assembly; supramolecular chemistry
Year: 2015 PMID: 26555139 DOI: 10.1002/chem.201503616
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236