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High-throughput screening of small molecule ligands targeted to live bacteria surface.


ABSTRACT: The discovery of small molecule ligands targeted to the surface of live pathogenic bacteria would enable an entirely new class of antibiotics. We report the development and validation of a microarray-based high-throughput screening platform for bacteria that exploits 300 ?m diameter chemical spots in a 1 in. × 3 in. nanolayered glass slide format. Using 24 model compounds and 4 different bacterial strains, we optimized the screening technology, including fluorophore-based optical deconvolution for automated scoring of affinity and cyan-magenta-yellow-key (CMYK) color-coding for scoring of both affinity and specificity. The latter provides a lossless, one-dimensional view of multidimensional data. By linking in silico analysis with cell binding affinity and specificity, we could also begin to identify the physicochemical factors that affect ligand performance. The technology we describe could form the foundation for developing new classes of antibiotics.

SUBMITTER: Lee JH 

PROVIDER: S-EPMC3621038 | biostudies-literature | 2013 Apr

REPOSITORIES: biostudies-literature

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High-throughput screening of small molecule ligands targeted to live bacteria surface.

Lee Jeong Heon JH   Park Sunny S   Hyun Hoon H   Bordo Mark W MW   Oketokoun Rafiou R   Nasr Khaled A KA   Frangioni John V JV   Choi Hak Soo HS  

Analytical chemistry 20130318 7


The discovery of small molecule ligands targeted to the surface of live pathogenic bacteria would enable an entirely new class of antibiotics. We report the development and validation of a microarray-based high-throughput screening platform for bacteria that exploits 300 μm diameter chemical spots in a 1 in. × 3 in. nanolayered glass slide format. Using 24 model compounds and 4 different bacterial strains, we optimized the screening technology, including fluorophore-based optical deconvolution f  ...[more]

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