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Автор King, Kevin R.
Автор Wang, Sihong
Автор Irimia, Daniel
Автор Jayaraman, Arul
Автор Toner, Mehmet
Автор Yarmush, Martin L.
Дата выпуска 2007
dc.description The dynamics of gene expression are fundamental to the coordination of cellular responses. Measurement of temporal gene expression patterns is currently limited to destructive low-throughput techniques such as northern blotting, reverse transcription polymerase chain reaction (RT-PCR), and DNA microarrays. We report a scalable experimental platform that combines microfluidic addressability with quantitative live cell imaging of fluorescent protein transcriptional reporters to achieve real-time characterization of gene expression programs in living cells. Integrated microvalve arrays control row-seeding and column-stimulation of 256 nanoliter-scale bioreactors to create a high density matrix of stimulusâ response experiments. We demonstrate the approach in the context of hepatic inflammation by acquiring â ¼5000 single-time-point measurements in each automated and unattended experiment. Experiments can be assembled in hours and perform the equivalent of months of conventional experiments. By enabling efficient investigation of dynamic gene expression programs, this technology has the potential to make significant impacts in basic science, drug development, and clinical medicine.
Формат application.pdf
Издатель Royal Society of Chemistry
Название A high-throughput microfluidic real-time gene expression living cell array
Тип research-article
DOI 10.1039/b612516f
Electronic ISSN 1473-0189
Print ISSN 1473-0197
Журнал Lab on a Chip
Том 7
Первая страница 77
Последняя страница 85
Аффилиация KingAuthors contributed equally. Kevin R.; Center for Engineering and Medicine and Department of Surgery, Massachusetts General Hospital; Massachusetts Institute of Technology, Division of Health Science and Technology; Shriners Hospitals for Children, and Harvard Medical School
Аффилиация Wang Sihong; Center for Engineering and Medicine and Department of Surgery, Massachusetts General Hospital; Shriners Hospitals for Children, and Harvard Medical School
Аффилиация Irimia Daniel; Center for Engineering and Medicine and Department of Surgery, Massachusetts General Hospital; Shriners Hospitals for Children, and Harvard Medical School
Аффилиация Jayaraman Arul; Department of Chemical Engineering, Texas A&M University
Аффилиация Toner Mehmet; Center for Engineering and Medicine and Department of Surgery, Massachusetts General Hospital; Massachusetts Institute of Technology, Division of Health Science and Technology; Shriners Hospitals for Children, and Harvard Medical School
Аффилиация Yarmush Martin L.; Center for Engineering and Medicine and Department of Surgery, Massachusetts General Hospital; Massachusetts Institute of Technology, Division of Health Science and Technology; Shriners Hospitals for Children, and Harvard Medical School
Выпуск 1
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