0000000000021493

AUTHOR

Jonas Kaltbeitzel

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Lipid Bilayer Interactions of Peptidic Supramolecular Polymers and Their Impact on Membrane Permeability and Stability.

2020

The synthesis and physicochemical characterization of supramolecular polymers with tunable assembly profiles offer exciting opportunities, involving the development of new biomedical carriers. Because synthetic nanocarriers aim to transport substances across or toward cellular membranes, we evaluated the interactions of amphiphilic peptide-based supramolecular polymers with lipid bilayers. Here, we focused on nanorod-like supramolecular polymers, obtained from two C3-symmetric dendritic peptide amphiphiles with alternating Phe/His sequences, equipped with a peripheral tetraethylene glycol dendron (C3-PH) or charged ethylenediamine end groups (C3-PH+). Triggered by pH changes, these amphiphi…

Cell Membrane PermeabilityMembrane permeabilityCell SurvivalMacromolecular SubstancesPolymersSurface PropertiesLipid BilayersSupramolecular chemistryBiochemistryAmphiphileHumansParticle SizeLipid bilayerCells CulturedCell Proliferationchemistry.chemical_classificationNanotubesMolecular StructureChemistryBilayerHydrogen-Ion ConcentrationSupramolecular polymersMembraneHEK293 CellsBiophysicsDrug carrierPeptidesHydrophobic and Hydrophilic InteractionsBiochemistry
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