4.7 Article

An integrated portable hand-held analyser for real-time isothermal nucleic acid amplification

Journal

ANALYTICA CHIMICA ACTA
Volume 598, Issue 2, Pages 286-294

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aca.2007.07.036

Keywords

field detection; real-time nucleic acid sequence-based amplification; System in Package; fluorometer

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A compact hand-held heated fluorometric instrument for performing real-time isothermal nucleic acid amplification and detection is described. The optoelectronic instrument combines a Printed Circuit Board/Micro Electro Mechanical Systems (PCB/MEMS) reaction detection/chamber containing an integrated resistive heater with attached miniature LED light source and photo-detector and a disposable glass waveguide capillary to enable a mini-fluorometer. The fluorometer is fabricated and assembled in planar geometry, rolled into a tubular format and packaged with custom control electronics to form the hand-held reactor. Positive or negative results for each reaction are displayed to the user using an LED interface. Reaction data is stored in FLASH memory for retrieval via an in-built USB connection. Operating on one disposable 3 V lithium battery > 12, 60 min reactions can be performed. Maximum dimensions of the system are 150mm (h) x 48 min (d) x 40 min (w), the total instrument weight (with battery) is 140 g. The system produces comparable results to laboratory instrumentation when performing a real-time nucleic acid sequence-based amplification (NASBA) reaction, and also displayed comparable precision, accuracy and resolution to laboratory-based real-time nucleic acid amplification instrumentation. A good linear response (R-2 = 0.948) to fluorescein gradients ranging from 0.5 to 10 mu M was also obtained from the instrument indicating that it may be utilized for other fluorometric assays. This instrument enables an inexpensive, compact approach to in-field genetic screening, providing results comparable to laboratory equipment with rapid user feedback as to the status of the reaction. (c) 2007 Published by Elsevier B.V.

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