Biosensors based on plasmonic nanostructures are widely used in various applications and benefit from numerous operational advantages. One type of application where nanostructured sensors provide unique value in comparison with, for instance, conventional surface plasmon resonance, is investigations of the influence of nanoscale geometry on biomolecular binding events. In this study, we show that plasmonic “nanowells” conformally coated with a continuous lipid bilayer can be used to detect the preferential binding of the insulin receptor tyrosine kinase substrate protein (IRSp53) I-BAR domain to regions of negative surface curvature, i.e., the interior of the nanowells. Two different sensor architectures with and without an additional niobi...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
Biosensors based on plasmonic nanostructures offer label-free and real-time monitoring of biomolecul...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Within life science, there is currently an intense search for novel techniques that enable efficient...
Within life science, there is currently an intense search for novel techniques that enable efficient...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
Biosensors based on plasmonic nanostructures offer label-free and real-time monitoring of biomolecul...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
Biosensors based on plasmonic nanostructures are widely used in various applications and benefit fro...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
The biochemical processes of cell membranes are sensitive to the geometry of the lipid bilayer. We s...
Within life science, there is currently an intense search for novel techniques that enable efficient...
Within life science, there is currently an intense search for novel techniques that enable efficient...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
The design and application of surface-based nanoplasmonic sensors has spurred broad interest from th...
Tunable nanoplasmonic biosensing for lipid and protein applications is reported based on controlling...
Biosensors based on plasmonic nanostructures offer label-free and real-time monitoring of biomolecul...