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Controlled Nanoscale Topography and Chemistry for biomaterial interfaces
Dr. Sivashankar Krishnamoorthy Enabling platform for nanoscale patterns on surface COST Action Meeting BIONECA, October 2017, Bucharest
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Nano-enabled bio-interfaces
LIST Know-How Plasmonic sensors PRL 94, (2005) LSPR, SERS sensors Enhance biomolecular Density, Kinetics, Orientation, Conformation PNAS, 2010, 107, 6264 Adv. Mater. 2008, 20, 2782 Engineered Bio-interfaces Study/Influence cell-behavior p d h Aleksei Aksimentiev group page, UIUC Nanosieves High surface area biosensors biosensing.wordpress.com359 Porous Interfaces 200 nm Enhanced Surfaces 55-60 nm
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An interplay of multiple parameters
Convergence of optimal choice at each level Nanopatterned Bio-Interfaces Feature Substrate Shape Surface-functionalization Polystyrene, Metal, Glass profile, Aspect ratio Ligands, Charges, NPs Nanopatterns are basically a spatially correlated distribution of nanoscale features on surface Biocompatible polymers, Metal, Glass, Polystyrene Amine, Carboxy, Epoxy, polymeric, PEG-ylated, Lipid-based..
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Relevant Existing projects
NPs, Molecules Functionalized Microcarriers mm PDMS Substrate DNA Barcode Functionalized Glass Cell-Based Devices
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