4.7 Article

Massively parallel concentration device for multiplexed immunoassays

Journal

LAB ON A CHIP
Volume 11, Issue 7, Pages 1351-1358

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c0lc00349b

Keywords

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Funding

  1. National Science Foundation [CBET-0854026]
  2. NIH [EB005743, CA119402]
  3. Korea Science and Engineering Foundation [R0A-2007-000-20098-0, R01-2006-000-10657-0]
  4. National Research Foundation of Korea (NRF) [20090083510]
  5. Korean government (MEST) through Multi-phenomena CFD Engineering Research Center
  6. NATIONAL CANCER INSTITUTE [R01CA119402] Funding Source: NIH RePORTER
  7. NATIONAL INSTITUTE OF BIOMEDICAL IMAGING AND BIOENGINEERING [R01EB005743] Funding Source: NIH RePORTER

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A massively parallel nanofluidic concentration device array for multiplexed and high-throughput biomolecule detection is demonstrated. By optimizing the microchannel/nanojunction design and channel conductivity, an array of up to 128 nanofluidic concentration devices were fabricated. Operation of the entire array requires only one inlet and one outlet reservoir, with the application of a single operational voltage bias across them. Concentration efficiencies of the devices were found to be uniform within the array, within 5% error. Alternatively, concentration speed in each channel can be individually tuned by controlling the length of the inlet microchannel and thus controlling the flow rate based on change of the tangential electric field. This allows immuno-binding reactions at different concentration ranges to be performed in parallel. Using multiplexed, successive-concentration enhanced detection in the device, we have shown that the dynamic range and reliability of the immunoassay can be significantly increased.

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