Literature DB >> 19823726

High-throughput flow alignment of barcoded hydrogel microparticles.

Stephen C Chapin1, Daniel C Pregibon, Patrick S Doyle.   

Abstract

Suspension (particle-based) arrays offer several advantages over conventional planar arrays in the detection and quantification of biomolecules, including the use of smaller sample volumes, more favorable probe-target binding kinetics, and rapid probe-set modification. We present a microfluidic system for the rapid alignment of multifunctional hydrogel microparticles designed to bear one or several biomolecule probe regions, as well as a graphical code to identify the embedded probes. Using high-speed imaging, we have developed and optimized a flow-through system that (1) allows for a high particle throughput, (2) ensures proper particle alignment for decoding and target quantification, and (3) can be reliably operated continuously without clogging. A tapered channel flanked by side focusing streams is used to orient the flexible, tablet-shaped particles into a well-ordered flow in the center of the channel. The effects of channel geometry, particle geometry, particle composition, particle loading density, and barcode design are explored to determine the best combination for eventual use in biological assays. Particles in the optimized system move at velocities of approximately 50 cm s(-1) and with throughputs of approximately 40 particles s(-1). Simple physical models and CFD simulations have been used to investigate flow behavior in the device.

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Year:  2009        PMID: 19823726      PMCID: PMC2814334          DOI: 10.1039/b909959j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  26 in total

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  10 in total

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Journal:  Curr Opin Colloid Interface Sci       Date:  2011-04-01       Impact factor: 6.448

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Authors:  David C Appleyard; Stephen C Chapin; Rathi L Srinivas; Patrick S Doyle
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3.  Magnetic barcoded hydrogel microparticles for multiplexed detection.

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4.  Rapid microRNA profiling on encoded gel microparticles.

Authors:  Stephen C Chapin; David C Appleyard; Daniel C Pregibon; Patrick S Doyle
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5.  Fabrication of uniform DNA-conjugated hydrogel microparticles via replica molding for facile nucleic acid hybridization assays.

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6.  Multiplexed protein quantification with barcoded hydrogel microparticles.

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9.  In-flow real-time detection of spectrally encoded microgels for miRNA absolute quantification.

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10.  Quantitative and multiplex microRNA assays from unprocessed cells in isolated nanoliter well arrays.

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Journal:  Lab Chip       Date:  2018-08-07       Impact factor: 6.799

  10 in total

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