Literature DB >> 24942348

Binding of amphiphilic and triphilic block copolymers to lipid model membranes: the role of perfluorinated moieties.

Christian Schwieger1, Anja Achilles, Sven Scholz, Jan Rüger, Kirsten Bacia, Kay Saalwaechter, Jörg Kressler, Alfred Blume.   

Abstract

A novel class of symmetric amphi- and triphilic (hydrophilic, lipophilic, fluorophilic) block copolymers has been investigated with respect to their interactions with lipid membranes. The amphiphilic triblock copolymer has the structure PGMA(20)-PPO(34)-PGMA(20) (GP) and it becomes triphilic after attaching perfluoroalkyl moieties (F9) to either end which leads to F(9)-PGMA(20)-PPO(34)-PGMA(20)-F(9) (F-GP). The hydrophobic poly(propylene oxide) (PPO) block is sufficiently long to span a lipid bilayer. The poly(glycerol monomethacrylate) (PGMA) blocks have a high propensity for hydrogen bonding. The hydrophobic and lipophobic perfluoroalkyl moieties have the tendency to phase segregate in aqueous as well as in hydrocarbon environments. We performed differential scanning calorimetry (DSC) measurements on polymer bound lipid vesicles under systematic variation of the bilayer thickness, the nature of the lipid headgroup, and the polymer concentration. The vesicles were composed of phosphatidylcholines (DMPC, DPPC, DAPC, DSPC) or phosphatidylethanolamines (DMPE, DPPE, POPE). We showed that GP as well as F-GP binding have membrane stabilizing and destabilizing components. PPO and F9 blocks insert into the hydrophobic part of the membrane concomitantly with PGMA block adsorption to the lipid headgroup layer. The F9 chains act as additional membrane anchors. The insertion of the PPO blocks of both GP and F-GP could be proven by 2D-NOESY NMR spectroscopy. By fluorescence microscopy we show that F-GP binding increases the porosity of POPC giant unilamellar vesicles (GUVs), allowing the influx of water soluble dyes as well as the translocation of the complete triphilic polymer and its accumulation at the GUV surface. These results open a new route for the rational design of membrane systems with specific properties.

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Year:  2014        PMID: 24942348     DOI: 10.1039/c4sm00830h

Source DB:  PubMed          Journal:  Soft Matter        ISSN: 1744-683X            Impact factor:   3.679


  2 in total

1.  Self-Sorting and Coassembly of Fluorinated, Hydrogenated, and Hybrid Janus Dendrimers into Dendrimersomes.

Authors:  Qi Xiao; Jack D Rubien; Zhichun Wang; Ellen H Reed; Daniel A Hammer; Dipankar Sahoo; Paul A Heiney; Srujana S Yadavalli; Mark Goulian; Samantha E Wilner; Tobias Baumgart; Sergei A Vinogradov; Michael L Klein; Virgil Percec
Journal:  J Am Chem Soc       Date:  2016-09-14       Impact factor: 15.419

Review 2.  Synthesis and applications of theranostic oligonucleotides carrying multiple fluorine atoms.

Authors:  Valeriy G Metelev; Alexei A Bogdanov
Journal:  Theranostics       Date:  2020-01-01       Impact factor: 11.556

  2 in total

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