4.7 Article

Microfluidic devices with permeable polymer barriers for capture and transport of biomolecules and cells

Journal

LAB ON A CHIP
Volume 13, Issue 17, Pages 3389-3397

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3lc50280e

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Funding

  1. NIH [R01HG004804, R21HG005096, R01GM097253]

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We report a method for fabricating permeable polymer microstructure barriers in polydimethylsiloxane (PDMS) microfluidic devices and the use of the devices to capture and transport DNA and cells. The polymer microstructure in a desired location in a fluidic channel is formed in situ by the polymerization of acrylamide and polyethylene diacrylate cross-linker (PEG-DA) monomer in a solution which is trapped in the location using a pair of PDMS valves. The porous polymer microstructure provides a mechanical barrier to convective fluid flow in the channel or between two microfluidic chambers while it still conducts ions or small charged species under an electric field, allowing for the rapid capture and transport of biomolecules and cells by electrophoresis. We have demonstrated the application of the devices for the rapid capture and efficient release of bacteriophage l genomic DNA, solution exchange and for the transport and capture of HeLa cells. Our devices will enable the multi-step processing of biomolecules and cells or individual cells within a single microfluidic chamber.

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