4.7 Article

Real-time monitoring of strand-displacement DNA amplification by a contactless electrochemical microsystem using interdigitated electrodes

Journal

LAB ON A CHIP
Volume 12, Issue 17, Pages 3190-3196

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2lc40384f

Keywords

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Funding

  1. 973 Program of the Ministry of Science and Technology of China [2012CB933303, 2011CB707505]
  2. National Key Technology RD Program [2012BAK08B05]
  3. Major National Science and Technology Projects [2009ZX10004_505]
  4. Science and Technology Commission of the Shanghai Municipality [1052nm06100, 11nm0505800, 11391901900, 11JC1414400]

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This paper reports the design and implementation of a contactless conductivity detection system which combines a thermal control cell, a data processing system and an electrochemical (EC) cell for label-free isothermal nucleic acid amplification and real-time monitoring. The EC cell consists of a microchamber and interdigitated electrodes as the contactless conductivity biosensor with a cover slip as insulation. In our work, contactless EC measurements, the effects of trehalose on amplification, and chip surface treatment are investigated. With the superior performance of the biosensor, the device can detect the amount of pure DNA at concentrations less than 0.1 pg mu l(-1). The EC cell, integrated with a heater and a temperature sensor, has successfully implemented nicking-based strand-displacement amplification at an initial concentration of 2.5 mu M and the yields are monitored directly (dismissing the use of probes or labels) on-line. This contactless detector carries important advantages: high anti-interference capability, long detector life, high reusability and low cost. In addition, the small size, low power consumption and portability of the detection cell give the system the potential to be highly integrated for use in field service and point of care applications.

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