An Automated Microfluidic Chemostat for a Self-Replicating System of DNA Constructs
ORAL
Abstract
We have modified a bacterial microchemostat$^{\mathrm{1}}$ for use in studying and optimizing a self-replicating system based on DNA constructs. The self-replication process we employ requires cycling temperature and UV light exposure. The base units of our system are DNA constructs that can recognize their complements using DNA ``sticky ends'' and can be covalently linked to one another through the use of a UV-crosslinkable nucleobase substitute. ``Seed particles'' of varying length are made by attaching two or more of these constructs and are added to and processed in this microfluidic system, which allows for temperature control, UV illumination and microscopic observation of fluorescence and FRET. Automation provides for a well-regulated and high-throughput testing and optimization of conditions. [1] F. K. Balagadde \textit{et al.}, Science \textbf{309}, 137 (2005).
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Authors
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Andrew Bergman
Department of Physics, New York University
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Xiaojin He
Department of Chemical Engineering, The Hong Kong University of Science and Technology
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Corinna Maass
Department of Physics, New York University, Center of Soft Matter Research, New York University, New York 10003, USA
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Ruojie Sha
Department of Chemistry, New York University
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Yongli Mi
Department of Chemical Engineering, The Hong Kong University of Science and Technology
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Nadrian Seeman
Department of Chemistry, New York University
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Paul Chaikin
New York University, CSMR, NYU, Department of Physics, New York University, Center of Soft Matter Research, New York University, New York 10003, USA, Center for Soft Matter Research, NYU