SlipChip
Top Cited Papers
- 15 May 2009
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Lab on a Chip
- Vol. 9 (16), 2286-2292
- https://doi.org/10.1039/b908978k
Abstract
The SlipChip is a microfluidic device designed to perform multiplexed microfluidic reactions without pumps or valves. The device has two plates in close contact. The bottom plate contains wells preloaded with many reagents; in this paper plates with 48 reagents were used. These wells are covered by the top plate that acts as a lid for the wells with reagents. The device also has a fluidic path, composed of ducts in the bottom plate and wells in the top plate, which is connected only when the top and bottom plate are aligned in a specific configuration. Sample can be added into the fluidic path, filling both wells and ducts. Then, the top plate is “slipped”, or moved, relative to the bottom plate so the complementary patterns of wells in both plates overlap, exposing the sample-containing wells of the top plate to the reagent-containing wells of the bottom plate, and enabling diffusion and reactions. Between the two plates, a lubricating layer of fluorocarbon was used to facilitate relative motion of the plates. This paper implements this approach on a nanoliter scale using devices fabricated in glass. Stability of preloaded solutions, control of loading, and lack of cross-contamination were tested using fluorescent dyes. Functionality of the device was illustrated viacrystallization of a model membrane protein. Fabrication of this device is simple and does not require a bonding step. This device requires no pumps or valves and is applicable to resource-poor settings. Overall, this device should be valuable for multiplexed applications that require exposing one sample to many reagents in small volumes. One may think of the SlipChip as an easy-to-use analogue of a preloaded multi-well plate, or a preloaded liquid-phase microarray.Keywords
This publication has 48 references indexed in Scilit:
- Laterally Mobile, Functionalized Self-Assembled Monolayers at the Fluorous−Aqueous Interface in a Plug-Based Microfluidic System: Characterization and Testing with Membrane Protein CrystallizationJournal of the American Chemical Society, 2009
- DNA methylation analysis on a droplet-in-oil PCR arrayLab on a Chip, 2009
- Plug‐Based Microfluidics with Defined Surface Chemistry to Miniaturize and Control Aggregation of Amyloidogenic PeptidesAngewandte Chemie International Edition, 2009
- Integrated barcode chips for rapid, multiplexed analysis of proteins in microliter quantities of bloodNature Biotechnology, 2008
- Detecting bacteria and determining their susceptibility to antibiotics by stochastic confinement in nanoliter droplets using plug-based microfluidicsLab on a Chip, 2008
- Using a Multijunction Microfluidic Device To Inject Substrate into an Array of Preformed Plugs without Cross-Contamination: Comparing Theory and ExperimentsAnalytical Chemistry, 2007
- Reactions in Droplets in Microfluidic ChannelsAngewandte Chemie International Edition, 2006
- Production of arrays of chemically distinct nanolitre plugs via repeated splitting in microfluidic devicesLab on a Chip, 2006
- On-Chip Titration of an Anticoagulant Argatroban and Determination of the Clotting Time within Whole Blood or Plasma Using a Plug-Based Microfluidic SystemAnalytical Chemistry, 2006
- Microfluidic cartridges preloaded with nanoliter plugs of reagents: an alternative to 96-well plates for screeningCurrent Opinion in Chemical Biology, 2006