Publication | Closed Access
Enhanced Mechanical Rigidity of Hydrogels Formed from Enantiomeric Peptide Assemblies
204
Citations
21
References
2011
Year
EngineeringBiomimetic MaterialsSmart PolymerPeptide EngineeringResponsive PolymersBioresponsive MaterialsBiomedical EngineeringMechanical RigiditySoft MatterPolymersHydrogelsBiophysicsPolymer ChemistryBiopolymersMaterial RigidityBiopolymer GelEnhanced Mechanical RigiditySelf-assemblyPolymer SciencePolymer Self-assemblyCd Spectroscopy
Chirality can be used as a design tool to control the mechanical rigidity of hydrogels formed from self-assembling peptides. Hydrogels prepared from enantiomeric mixtures of self-assembling β-hairpins show nonadditive, synergistic, enhancement in material rigidity compared to gels prepared from either pure enantiomer, with the racemic hydrogel showing the greatest effect. CD spectroscopy, TEM, and AFM indicate that this enhancement is defined by nanoscale interactions between enantiomers in the self-assembled state.
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