Journal of the American Chemical Society · 2005 · 27 citations · 15 references
Three-dimensional Chemical PatternsProteinlipid InteractionEngineeringMolecular Self-assemblyMicron ScaleBiofabricationBiomedical EngineeringNew Molecular ApproachPeptide ImmobilizationSitu FabricationPolymerized PhospholipidsSelective SeparationSeparation TechniqueMicrofluidicsAdvanced SeparationBiophysicsMolecular SievingSeparation TechnologyMolecular EngineeringBiomolecular EngineeringMembrane FormationMicrofabricationSelf-assemblyPolymer ScienceBiomems
We report a new molecular approach for in situ generation of micron scale, chemically and biochemically functionalized patterns inside three-dimensional, completely enclosed fluidic channels. The formation of chemical patterns is based upon a combination of lipid bilayer self-assembly and UV photopolymerization of photoreactive, cross-linkable phospholipids. Using this approach, we have functionalized capillaries of varying inner diameters with a range of chemistries useful for protein and peptide immobilization. Here, we demonstrate the ability to produce small molecule and protein-based chemical patterns.
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André Bernard, Emmanuel Delamarche, Heinz Schmid et al. · Langmuir · 1998 · 520 citations
Protein Assembly, Hydrophobic Substrates, Molecular Biology +17
Patterned Protein Layers on Solid Substrates by Thin Stamp Microcontact Printing
Conrad D. James, R Davis, Lance C. Kam et al. · Langmuir · 1998 · 293 citations