Related Experiment Video
Updated: Jun 1, 2026

Functional Surface-immobilization of Genes Using Multistep Strand Displacement Lithography
Published on: October 25, 2018
Controlled confinement of DNA at the nanoscale: nanofabrication and surface bio-functionalization
Matteo Palma1, Justin J Abramson, Alon A Gorodetsky
1Department of Mechanical Engineering & Applied Physics and Applied Mathematics, Columbia University, New York, NY, USA. mp2766@columbia.edu
Abstract:
Nanopatterned arrays of biomolecules are a powerful tool to address fundamental issues in many areas of biology. DNA nanoarrays, in particular, are of interest in the study of DNA-protein interactions and for biodiagnostic investigations. In this context, achieving a highly specific nanoscale assembly of oligonucleotides at surfaces is critical. In this chapter, we describe a method to control the immobilization of DNA on nanopatterned surfaces; the nanofabrication and the bio-functionalization involved in the process will be discussed.

