Nano Letters · 2011 · 30 citations · 10 references
Silicon NanowiresEngineeringCell AdhesionNanostructured SurfaceBiofabricationOrgan-on-a-chipBiomedical EngineeringNanomedicineMatrix BiologyMicrofluidicsBiophysicsPotential ReservoirsNanobiotechnologyNanofluidicsCell BiomechanicsLoad MacromoleculesSurface NanoengineeringSurface FunctionalizationNanofabricationMedicineExtracellular Matrix
To circumvent the barriers encountered by macromolecules at the gastrointestinal mucosa, sufficient therapeutic macromolecules must be delivered in close proximity to cells.(1) Previously, we have shown that silicon nanowires penetrate the mucous layer and adhere directly to cells under high shear.(2) In this work, we characterize potential reservoirs and load macromolecules into interstitial space between nanowires. We show significant increases in loading capacity due to nanowires while retaining adhesion of loaded particles under high shear.
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Variability of gastrointestinal transit in healthy women and men.
Lukas Degen, S. F. Phillips · Gut · 1996 · 341 citations · Full text