Literature DB >> 22305898

Highly efficient capillary polymerase chain reaction using an oscillation droplet microreactor.

Dayu Liu1, Guangtie Liang, Xiuxia Lei, Bin Chen, Wei Wang, Xiaomian Zhou.   

Abstract

The current work presents the development of a capillary-based oscillation droplet approach to maximize the potential of a continuous-flow polymerase chain reaction (PCR). Through the full utilization of interfacial chemistry, a water-in-oil (w/o) droplet was generated by allowing an oil-water plug to flow along a polytetrafluoroethylene (PTFE) capillary. The w/o droplet functioned as the reactor for oscillating-flow PCR to provide a stable reaction environment, accelerate reagent mixing, and eliminate surface adsorption. The capillary PCR approach proposed in the current research offers high amplification efficiency, fast reaction speed, and easy system control attributable to the oscillation droplet reactor. Experimental results show that the droplet-based micro-PCR assay requires lower reaction volume (2 μL) and shorter reaction time (12 min) compared with conventional PCR methods. Taking the amplification of the New Delhi metallo-beta-lactamase (NDM-1) gene as an example, the present work demonstrates that the oscillation droplet PCR assay is capable of achieving high efficiency up to 89.5% and a detection limit of 10 DNA copies. The miniature PCR protocol developed in the current work is fast, robust, and low-cost, thus exhibiting the potential for expansion into various practical applications.
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22305898     DOI: 10.1016/j.aca.2011.12.066

Source DB:  PubMed          Journal:  Anal Chim Acta        ISSN: 0003-2670            Impact factor:   6.558


  1 in total

1.  One-heater flow-through polymerase chain reaction device by heat pipes cooling.

Authors:  Jyh Jian Chen; Ming Huei Liao; Kun Tze Li; Chia Ming Shen
Journal:  Biomicrofluidics       Date:  2015-01-22       Impact factor: 2.800

  1 in total

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