Metal Surface Modification

Metal surface modification is the alteration of a metal’s outermost layer to improve its chemical, physical, or biological performance without changing the bulk material. In bioengineering, methods such as chemical treatment, electrochemical processing, coating deposition, and surface texturing change properties including roughness, wettability, surface energy, corrosion resistance, and molecular composition. These changes influence protein adsorption, cell attachment, bacterial interactions, and tissue integration at the material interface. Consequently, metal surface modification supports the development of orthopedic and dental implants, biosensors, and other medical devices by improving biocompatibility, durability, and functional performance.

Metal Surface Modification - Related Videos

Research

JoVE Journal - Chemistry

A Method to Manipulate Surface Tension of a Liquid Metal via Surface Oxidation and Reduction

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Cited by 12 •

2016

We present a method to control the interfacial energy of a liquid metal in an electrolyte via electrochemical deposition (or removal) of a surface oxide layer. This simple method can control the capillary behavior of gallium-based liquid metals by tuning the interfacial energy rapidly, significantly, and reversibly using modest voltages.

Chemoselective Modification of Viral Surfaces via Bioorthogonal Click Chemistry

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Cited by 14 •

2012

Adenovirus particles are engineered to contain either the unnatural amino acid analogue azidohomoalanine or the azido sugar O-GlcNAz. The azide group of each is chemoselectively ligated via "click" chemistry reactions as a means of viral surface modification.

Multi-Scale Modification of Metallic Implants With Pore Gradients, Polyelectrolytes and Their Indirect Monitoring In vivo

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Cited by 4 •

2013

In this video, we will demonstrate modification techniques for porous metallic implants to improve their functionality and to control cell migration. Techniques include development of pore gradients to control cell movement in 3D and production of basement membrane mimics to control cell movement in 2-D. Also, a HPLC-based method for monitoring implant integration in-vivo via analysis of blood proteins is described.

Detection of the Surface Metal Transporters in Neisseria gonorrhoeae Using Dot Blot

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2025

Source: Maurakis, S., and Cornelissen, C. N. Metal-Limited Growth of Neisseria gonorrhoeae for Characterization of Metal-Responsive Genes and Metal Acquisition from Host Ligands. J. Vis. Exp. (2020)This video demonstrates the procedure for detecting surface metal transporters in Neisseria gonorrhoeae grown under metal-limited conditions using a dot blot assay, involving ligand binding, antibody detection, and colorimetric visualization.

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