z-logo
Premium
In situ Synthesis of Lipopeptides as Versatile Receptors for the Specific Binding of Nanoparticles and Liposomes to Solid‐Supported Membranes
Author(s) -
Schuy Steffen,
Treutlein Barbara,
Pietuch Anna,
Janshoff Andreas
Publication year - 2008
Publication title -
small
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.785
H-Index - 236
eISSN - 1613-6829
pISSN - 1613-6810
DOI - 10.1002/smll.200701006
Subject(s) - vesicle , maleimide , liposome , peptide , popc , membrane , moiety , chemistry , phospholipid , combinatorial chemistry , biophysics , bilayer , stereochemistry , organic chemistry , biochemistry , biology
A detailed study of the in situ coupling of small peptides such as CGGH6 (H6) and CGWK8 (K8) to maleimide functionalized phospholipid bilayers is presented. Individually addressable microstructured membranes are employed to unequivocally probe the conjugation. The in situ coupling of peptides via a terminal cysteine moiety to maleimide functionalized phospholipids is shown to be a convenient and versatile way to selectively fabricate peptide‐modified phospholipid bilayers serving as specific receptor platforms for functionalized vesicles and nanoparticles. Specific binding of functional vesicles to the peptide‐modified bilayers is achieved by either histidine complexation with Ni‐NTA‐DOGS containing vesicles or electrostatic interaction between positively charged oligolysine bearing lipopeptides and negatively charged POPC/POPG vesicles. Peptide receptors are also found to be easily accessible from the aqueous phase and not buried within the membrane interior.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here