Open Access
Amphiphilic oligocholate macrocycles: self-assembly, transmembrane nanopore formation, and noncovalent tuning
Peer ReviewedLakmini Widanapathirana2013Dissertations/theses
Hydrophobic interactions normally are not considered a major driving force for self-assembling in a hydrophobic environment. When macrocyclic oligocholates were placed within lipid membranes, however, the macrocycles pulled water molecules from the aqueous phase into their hydrophilic internal cavities. These water molecules had strong tendencies to aggregate in a hydrophobic environment and templated the macrocycles to self-assemble into transmembrane nanopores. This counterintuitive hydrophobic effect resulted in some highly unusual transport behavior. Cholesterol normally increases the hydrophobicity of lipid membranes and makes them less permeable to hydrophilic molecules. The permeability of glucose across the oligocholatecontaining membranes, however, increased significantly upon the inclusion of cholesterol. Large

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