Programmable microfluidic synthesis of spectrally encoded microspheres.

Gerver, R E; Gómez-Sjöberg, R; Baxter, B C; Thorn, K S; Fordyce, P M; Diaz-Botia, C A; Helms, B A; DeRisi, J L · Lab Chip · 2012

basic_science · Level V

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Abstract

Spectrally encoded fluorescent beads are an attractive platform for assay miniaturization and multiplexing in the biological sciences. Here, we synthesize hydrophilic PEG-acrylate polymer beads encoded with lanthanide nanophosphors using a fully automated microfluidic synthesis device. These beads are encoded by including varying amounts of two lanthanide nanophosphors relative to a third reference nanophosphor to generate 24 distinct ratios. These codes differ by less than 3% from their target values and can be distinguished from each other with an error rate of <0.1%. The encoded bead synthesis strategy we have used is readily extensible to larger numbers of codes, potentially up to millions, providing a new platform technology for assay multiplexing.

Medical subject headings