FieldNA: a 3D printed vertical microfluidic device for portable nucleic acid isolation from olive oil samples
Vineet Penumarthy, Athanasia-Maria Dourou, Evangelia Lampropoulou, Stilianos Arhondakis, Ravi Prakash

TL;DR
FieldNA is a 3D printed portable device that efficiently extracts nucleic acids from olive oil samples without needing lab equipment.
Contribution
The novel FieldNA device uses gravity and magnet-assisted flow for portable nucleic acid extraction, eliminating reliance on lab infrastructure.
Findings
FieldNA produced nucleic acid yield and quality comparable to traditional lab methods.
The device successfully extracted DNA from complex olive oil samples.
FieldNA is suitable for scalable use in food and health sectors.
Abstract
Isolation and purification of nucleic acid is an essential step in molecular assays for several application areas including healthcare, food safety and security, environmental monitoring, forensic science, etc. Nucleic acid extraction is a critical bottleneck towards field deployable nucleic acid-based assays, limiting them to laboratory setups and bench-top configurations. In addition, this lack of portability leads to longer timelines for sample processing and time-to-results, and higher testing costs, limiting access to this highly sensitivity assay tool in many instances. Several efforts have explored the creation of portable nucleic acid extraction systems to complement recent innovations in reducing the footprint and overhead of the nucleic acid test assays; however, most solutions are dependent on supporting systems such as power supply, and peripheral laboratory equipment…
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Taxonomy
TopicsBiosensors and Analytical Detection · Innovative Microfluidic and Catalytic Techniques Innovation · Advanced Chemical Sensor Technologies
