Publication | Open Access
Direct Imaging of Lipid-Ion Network Formation under Physiological Conditions by Frequency Modulation Atomic Force Microscopy
162
Citations
26
References
2007
Year
Proteinlipid InteractionEngineeringMicroscopyMolecular BiologyDirect ImagingBiomedical EngineeringLipid MovementCellular PhysiologyLipid HeadgroupsMicroscopy MethodChemical ImageSpatial DistributionLipid-ion InteractionsBiophysicsNovel Imaging MethodLipid-ion Network FormationBiochemistryMembrane BiophysicsScanning Probe MicroscopyBiomedical ImagingScanning Force MicroscopyMedicinePhysiological Conditions
Various metal cations in physiological solutions interact with lipid headgroups in biological membranes, having an impact on their structure and stability, yet little is known about the molecular-scale dynamics of the lipid-ion interactions. Here we directly investigate the extensive lipid-ion interaction networks and their transient formation between headgroups in a dipalmitoylphosphatidylcholine bilayer under physiological conditions. The spatial distribution of ion occupancy is imaged in real space by frequency modulation atomic force microscopy with sub-Angstrom resolution.
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