Journal of the American Chemical Society · 2005 · 97 citations · 18 references
Stabilized MembranesHydrogelsPolymer HydrogelSingle Molecule BiophysicsLipid BiophysicsHydrogel-encapsulated Lipid MembranesBiochemistryMembrane StructureNatural SciencesProteinlipid InteractionDna NanotechnologySitu PhotopolymerizationLipid PreparationBiomedical EngineeringMedicineSingle-molecule DetectionBiophysics
We have encapsulated free-standing planar lipid membranes in a polymer hydrogel via in situ photopolymerization. These encapsulated membranes were measured to last at least 5 days and provided a stable environment for single-molecule measurements of incorporated alpha-hemolysin channel proteins. The translocation of single-stranded DNA through alpha-hemolysin incorporated into these encapsulated membranes is slowed over 100 times relative to that of the gel-free state. These stabilized membranes, therefore, have application to the single-molecule analysis of DNA as well as broader application to biomolecular sensors, membrane protein biophysical studies, and drug discovery.
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Structure of Staphylococcal α-Hemolysin, a Heptameric Transmembrane Pore
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A. MELLER, Lucas G. Nivón, Eric Brandin et al. · Proceedings of the National Academy of Sciences · 2000 · 920 citations · Full text