Literature DB >> 18542436

Automated bead-trapping apparatus and control system for single-molecule DNA sequencing.

Greg Bashford1, Don Lamb, Dan Grone, Bob Eckles, Kevin Kornelsen, Lyle Middendorf, John Williams.   

Abstract

We have been investigating a microfluidics platform for high-speed, low-cost sequencing of single DNA molecules using novel "charge-switch" nucleotides. A significant challenge is the design of a flowcell suitable for manipulating bead-DNA complexes and sorting labeled polyphosphate molecules by charge. The flowcell is part of a single-molecule detection instrument, creating fluorescence images from labeled polyphosphates. These images would ultimately be analyzed by signal processing algorithms to identify specific nucleotides in a DNA sequence. Here we describe requirements of the fluidics system for loading, identifying, tracking, and positioning beads. By dynamically modulating pressure gradients in the plenum chambers of a multi-channel network, we could guide individual beads with high precision to any desired coordinate and reversibly trap them in stepped channels. We show that DNA immobilized on pressure-trapped beads can be physically extended into a downstream channel under electric force for analysis. Custom dynamic algorithms for automated bead control are described.

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Year:  2008        PMID: 18542436     DOI: 10.1364/oe.16.003445

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  2 in total

Review 1.  The challenges of sequencing by synthesis.

Authors:  Carl W Fuller; Lyle R Middendorf; Steven A Benner; George M Church; Timothy Harris; Xiaohua Huang; Stevan B Jovanovich; John R Nelson; Jeffery A Schloss; David C Schwartz; Dmitri V Vezenov
Journal:  Nat Biotechnol       Date:  2009-11-06       Impact factor: 54.908

2.  Direct buffer composition of blood pre-process for nucleic acid based diagnostics.

Authors:  YeJi Kim; Won-Nyoung Lee; Hyun Jin Yoo; Changyoon Baek; Junhong Min
Journal:  Biochip J       Date:  2017-12-12       Impact factor: 3.494

  2 in total

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