Authors
Shin, S. W., Shah, S., Xia, C., Kawamura, A., Wang, Z., Kang, Y., Klatt, N., Clark, I. C.
Abstract
Many clinically important cell populations are defined by intracellular DNA or RNA signatures, but isolating and profiling these cells remains difficult. Probe-based in situ hybridization strategies that are compatible with cytometry have difficulty resolving low-abundance transcripts, integrated provirus, or single-copy genomic mutations. In contrast, droplet digital PCR achieves single-molecule sensitivity; however, subsequent cell isolation requires specialized microfluidic sorters that are slow and not widely available. Here, we introduce magniFIND-seq, a nucleic acid cytometry platform that combines the sensitivity of digital PCR with commercial magnetic-activated (MACS) and fluorescence-activated (FACS) sorting instruments. Single-cell genomes and transcriptomes are captured in agarose beads, target sequences are detected by digital PCR, and bead-bound amplicons are labeled with magnetic or fluorescent probes. Controlled evaporation shrinks beads from 55 to 20 m, enabling scalable magnetic separation, fast single-bead FACS sorting, and their combination for high-purity recovery of rare populations. Using magniFIND-seq, we demonstrate multiplexed single-copy detection and FACS-based isolation of simian immunodeficiency virus proviral pol and env targets. Separately, using BCR::ABL1 as a disease-defining target, we enrich chronic myeloid leukemia cells and recover single-cell transcriptomes that resolve tyrosine kinase inhibitor-resistance programs. magniFIND-seq extends the throughput and accessibility of nucleic acid cytometry by engineering compatibility with commercial instruments.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 19 Sep 2026.
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