Issue 2, 2001

Molecular patterning on carbon based surfaces through photobiotin activationElectronic Supplementary Information available. See http://www.rsc.org/suppdata/an/b0/b008475l/

Abstract

We have demonstrated the site-specific adhesion of photobiotin as a method of producing protein micropatterns. These patterns were created by the selective UV irradiation of a thin film of deposited photobiotin. The UV activated areas of photobiotin were then developed using fluorescently labelled avidin. The size of pattern produced is an order of magnitude smaller than those previously reported by this method. The patterns were characterised using atomic force microscopy (AFM) to determine their microstructure. It was found that the AFM could discriminate between the areas of protein immobilised to the surface through the activated photobiotin, and the bare substrate surface where the inactivated photobiotin had been removed during the washing process. The potential of these patterns as sensing surfaces is demonstrated through the creation of a spatially patterned immunosensing surface. In this case, a biotinylated antibody was bound to the surface and the pattern developed using a second antibody specific to the immobilised biotinylated antibody. This technique could thus provide a simple and efficient method of producing high density immunoassay systems.

Supplementary files

Article information

Article type
Paper
Submitted
20 Oct 2000
Accepted
15 Dec 2000
First published
15 Jan 2001

Analyst, 2001,126, 195-198

Molecular patterning on carbon based surfaces through photobiotin activation

L. M. Wilde, G. Farace, C. J. Roberts, M. C. Davies, G. H. W. Sanders, S. J. B. Tendler and P. M. Williams, Analyst, 2001, 126, 195 DOI: 10.1039/B008475L

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