Abstract
Artificial lipid bilayer on solid substrate plays an important role as an interface between nanotechnology and biology. In this study, grid structures were patterned on Au-Nb-glass substrate and artificial bilayer was prepared on these structures. The fluidity was checked using fluorescence recovery after photobleaching (FRAP), and neuronal adhesion was monitored on such structure using EphrinA5-tethered lipid bilayer. EphrinA5 is a ligand that binds to the Eph receptors of rat cortical neurons and influences cellular adhesion. Our result elucidated that influence of these nanopatterned protein-tethered lipid bilayer on cellular guidance and signaling can address many underlying mechanisms of cellular functioning and help us to understand and differentiate the signaling procedure in cancer and neurodegenera-tive diseases.
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Ghosh Moulick, R., Panaitov, G., Choi, S. E., Mayer, D., & Offenhäusser, A. (2018). Patterning artificial lipid bilayer on nanostructured surfaces. International Journal of Nanomedicine, 13, 55–58. https://doi.org/10.2147/IJN.S125005
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