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A microreactor system for point-of-care viral genome sequencing
Thomas M Hadlock1, Jacob D Neice1, Song Li2
1Department of Chemical Engineering, Virginia Tech, Blacksburg, VA, 24061, USA.
None:
Viral genome sequencing is critical for understanding viral biology, identifying strain mutations, and managing public health during pandemics. Although sequencing technologies have progressed over the years in terms of throughput and cost, a portable platform that integrates sample processing, library preparation, and sequencing remains critical for point-of-care viral sequencing that combats viral outbreaks. In here, we demonstrate a semi-automated, field-deployable microreactor system to produce nanopore sequencing libraries from viral samples. The system integrates isothermal amplification, purification, and enzymatic processing within a closed-channel format, minimizing contamination risk and operational complexity. Using Senecavirus A (SVA) as a surrogate for high-consequence pathogens, we demonstrate the system's ability to prepare sequencing libraries targeting three dispersed genomic regions comprising ∼14 % of the viral genome and identify single nucleotide variations with high confidence. Together with a portable nanopore sequencer, this microreactor system offers a robust solution for decentralized genomic surveillance and rapid diagnostics in resource-limited and outbreak-prone environments.

