Lab on a Chip · 2004 · 56 citations · 29 references
EngineeringSmart PolymerBiofabricationBiomedical EngineeringMicro PatterningProtein Non-adhesive PlasmaAdhesion LayerPpcrown LayerBiochip ApplicationsSurface ModificationMicro Scale PatterningMulti-functional CoatingBiofunctional MaterialSurface FunctionalizationMicrofabricationAdhesive MaterialPolymer ScienceBiomaterialsBiomedical Applications
Micro scale patterning of bioactive surfaces is desirable for numerous biochip applications. Polyethyleneoxide-like (PEO-like) coating with non-fouling functionality has been deposited using low frequency AC plasma polymerization. The non-fouling properties of the coating were tested with human cells (HeLa) and fluorescence labeled proteins (isothiocyanate-labeled bovine serum albumin, i.e. FITC-BSA). The PEO-like coatings were fabricated by plasma polymerization of 12-crown-4 (ppCrown) with plasma polymerized hexene (ppHexene) as adhesion layer. The coatings were micro patterned using conventional cleanroom photolithography and lift-off. Single cell arrays showed sharp contrast in cell adhesion between the untreated glass surface and the ppCrown layer. Similarly, proteins adsorbed selectively to untreated glass but not to ppCrown. The simplicity of the lift-off technique and the sturdiness and versatility of the plasma-polymerized coatings, make this technology highly suitable for bio-MEMS and biochip applications, where patterned high contrast non-fouling surfaces are needed.
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Geometric Control of Cell Life and Death
Christopher S. Chen, Milan Mrksich, Sui Huang et al. · Science · 1997 · 4.6K citations
Engineering Cell Shape and Function
Rahul Singhvi, Amit Kumar, Gabriel P. López et al. · Science · 1994 · 1.4K citations
Micropatterned Surfaces for Control of Cell Shape, Position, and Function
Christopher S. Chen, Milan Mrksich, Sui Huang et al. · Biotechnology Progress · 1998 · 712 citations
Milan Mrksich, Laura E. Dike, Joe Tien et al. · Experimental Cell Research · 1997 · 479 citations
Materials Science, Engineering, Surface Functionalization +9