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Updated: Aug 7, 2026

Microcontact Printing of Proteins for Cell Biology
Published on: December 5, 2008
Microcontact printing for precise control of nerve cell growth in culture
B C Wheeler1, J M Corey, G J Brewer
1Beckman Institute, Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign 61801, USA. bwheeler@uiuc.edu
Abstract:
Microcontact printing, facilitated by silane linker chemistry and high-relief stamps, creates precise patterns of proteins, which in turn control growth of hippocampal neurons in culture. This additive, multi-mask technique permits several different molecules to be patterned on the same substrate. The covalent linker technology permits relatively long-term (two-week) compliance of neurons to the stamped pattern against a polyethylene glycol background. When polylysine was stamped adjacent to a laminin/polylysine mixture, neural somata and dendrites preferred the polylysine while axons prefer the mixture or the border between the two.

