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Portable electroanalytical nucleic acid amplification tests using printed circuit boards and open-source electronics.


ABSTRACT: The realization of electrochemical nucleic acid amplification tests (NAATs) at the point of care (POC) is highly desirable, but it remains a challenge given their high cost and lack of true portability/miniaturization. Here we show that mass-produced, industrial standardized, printed circuit boards (PCBs) can be repurposed to act as near-zero cost electrodes for self-assembled monolayer-based DNA biosensing, and further integration with a custom-designed and low-cost portable potentiostat. To show the analytical capability of this system, we developed a NAAT using isothermal recombinase polymerase amplification, bypassing the need of thermal cyclers, followed by an electrochemical readout relying on a sandwich hybridization assay. We used our sensor and device for analytical detection of the toxic microalgae Ostreopsis cf. ovata as a proof of concept. This work shows the potential of PCBs and open-source electronics to be used as powerful POC DNA biosensors at a low-cost.

SUBMITTER: Toldra A 

PROVIDER: S-EPMC9511072 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Portable electroanalytical nucleic acid amplification tests using printed circuit boards and open-source electronics.

Toldrà Anna A   Ainla Alar A   Khaliliazar Shirin S   Landin Roman R   Chondrogiannis Georgios G   Hanze Martin M   Réu Pedro P   Hamedi Mahiar M MM  

The Analyst 20220926 19


The realization of electrochemical nucleic acid amplification tests (NAATs) at the point of care (POC) is highly desirable, but it remains a challenge given their high cost and lack of true portability/miniaturization. Here we show that mass-produced, industrial standardized, printed circuit boards (PCBs) can be repurposed to act as near-zero cost electrodes for self-assembled monolayer-based DNA biosensing, and further integration with a custom-designed and low-cost portable potentiostat. To sh  ...[more]

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