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Rainbow beads: a color coding method to facilitate high-throughput screening and optimization of one-bead one-compound combinatorial libraries.

Authors :
Luo J
Zhang H
Xiao W
Kumaresan PR
Shi C
Pan CX
Aina OH
Lam KS
Source :
Journal of combinatorial chemistry [J Comb Chem] 2008 Jul-Aug; Vol. 10 (4), pp. 599-604. Date of Electronic Publication: 2008 Jun 18.
Publication Year :
2008

Abstract

We have developed a new color-encoding method that facilitates high-throughput screening of one-bead one-compound (OBOC) combinatorial libraries. Polymer beads displaying chemical compounds or families of compounds are stained with oil-based organic dyes that are used as coding tags. The color dyes do not affect cell binding to the compounds displayed on the surface of the beads. We have applied such rainbow beads in a multiplex manner to discover and profile ligands against cell surface receptors. In the first application, a series of OBOC libraries with different scaffolds or motifs are each color-coded; small samples of each library are then combined and screened concurrently against live cells for cell attachment. Preferred libraries can be rapidly identified and selected for subsequent large-scale screenings for cell surface binding ligands. In a second application, beads with a series of peptide analogues (e.g., alanine scan) are color-coded, combined, and tested for binding against a specific cell line in a single-tissue culture well; the critical residues required for binding can be easily determined. In a third application, ligands reacting against a series of integrins are color-coded and used as a readily applied research tool to determine the integrin profile of any cell type. One major advantage of this straightforward and yet powerful method is that only an ordinary inverted microscope is needed for the analysis, instead of sophisticated (and expensive) fluorescent microscopes or flow cytometers.

Details

Language :
English
ISSN :
1520-4774
Volume :
10
Issue :
4
Database :
MEDLINE
Journal :
Journal of combinatorial chemistry
Publication Type :
Academic Journal
Accession number :
18558750
Full Text :
https://doi.org/10.1021/cc8000663