Integrated microfluidic bioprocessor for single-cell gene expression analysis

An integrated microdevice is developed for the analysis of gene expression in single cells. The system captures a single cell, transcribes and amplifies the mRNA, and quantitatively analyzes the products of interest. The key components of the microdevice include integrated nanoliter metering pumps,...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2008-12, Vol.105 (51), p.20173-20178
Hauptverfasser: Toriello, Nicholas M, Douglas, Erik S, Thaitrong, Numrin, Hsiao, Sonny C, Francis, Matthew B, Bertozzi, Carolyn R, Mathies, Richard A
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Sprache:eng
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Zusammenfassung:An integrated microdevice is developed for the analysis of gene expression in single cells. The system captures a single cell, transcribes and amplifies the mRNA, and quantitatively analyzes the products of interest. The key components of the microdevice include integrated nanoliter metering pumps, a 200-nL RT-PCR reactor with a single-cell capture pad, and an affinity capture matrix for the purification and concentration of products that is coupled to a microfabricated capillary electrophoresis separation channel for product analysis. Efficient microchip integration of these processes enables the sensitive and quantitative examination of gene expression variation at the single-cell level. This microdevice is used to measure siRNA knockdown of the GAPDH gene in individual Jurkat cells. Single-cell measurements suggests the presence of 2 distinct populations of cells with moderate (≈50%) or complete (≈0%) silencing. This stochastic variation in gene expression and silencing within single cells is masked by conventional bulk measurements.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.0806355106