Publication | Closed Access
Nanoscale Oxidative Patterning of Metallic Surfaces to Modulate Cell Activity and Fate
151
Citations
28
References
2009
Year
Tissue EngineeringEngineeringMultifunctional BiomaterialsNanostructured SurfaceBiomaterials DesignBiofabricationBiomedical EngineeringChemistryNanomedicineChemical EngineeringRegenerative BiomaterialsStem CellsNanoscale Physical CuingMaterials ScienceNanotechnologyNanobiotechnologyMedicineMetallic Surfaces3D BioprintingNanoscale Oxidative PatterningSurface FunctionalizationNanomaterialsSurface ChemistrySurface ScienceModulate Cell ActivityCompelling DeterminantBiomaterials
In the field of regenerative medicine, nanoscale physical cuing is clearly becoming a compelling determinant of cell behavior. Developing effective methods for making nanostructured surfaces with well-defined physicochemical properties is thus mandatory for the rational design of functional biomaterials. Here, we demonstrate the versatility of simple chemical oxidative patterning to create unique nanotopographical surfaces that influence the behavior of various cell types, modulate the expression of key determinants of cell activity, and offer the potential of harnessing the power of stem cells. These findings promise to lead to a new generation of improved metal implants with intelligent surfaces that can control biological response at the site of healing.
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