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Updated: Sep 25, 2026

Isolation and Activation of Murine Lymphocytes
Published on: October 30, 2016
Single-cell DNA cytometry with magnetic- and fluorescence-activated bead sorting
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 μm, 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.

