Related Experiment Video
Updated: May 27, 2026

Functional Surface-immobilization of Genes Using Multistep Strand Displacement Lithography
Published on: October 25, 2018
Charge specific protein placement at submicrometer and nanometer scale by direct modification of surface potential by
Sylvain Robin1, Abbasi A Gandhi, Maros Gregor
1Chemical and Environmental Science Department and Materials and Surface Science Institute, University of Limerick, Limerick, Ireland.
Abstract:
The understanding and the precise control of protein adsorption is extremely important for the development and optimization of biomaterials. The challenge resides in controlling the different surface properties, such as surface chemistry, roughness, wettability, or surface charge, independently, as modification of one property generally affects the other. We demonstrate the creation of electrically modified patterns on hydroxyapatite by using scanning electron beam to tailor the spatial regulation of protein adsorption via electrostatic interactions without affecting other surface properties of the material. We show that domains, presenting modulated surface potential, can be created to precisely promote or reduce protein adsorption.

