EpiFlow: multidimensional single-cell epigenetic profiling by spectral flow cytometry
Ruiz-Iglesias, J.; Bovolenta, E. R.; Canizares-Moscato, L.; Isoler-Alcaraz, J.; Martin-Rodriguez, L.; Segura, J.; Enriquez-Zarralanga, V.; de Rus-Moreno, A.; Contreras-Perez, A.; Gomez-Moya, A.; Garcia-Mateos, D.; Tercero, J. A.; Desvoyes, B.; Martinez del Val, A.; Camafeita, E.; Vazquez, J.; Jimenez-Carretero, D.; Raposo Ponce, B.; Ledesma, M. D.; Reglero-Real, N.; Perea, C.; Lecona, E.; Gomez, M.; Martinez-Martin, N.; Palomer, E.
Show abstract
The epigenetic landscape of individual cells determines their identity and function, yet current methods for profiling chromatin modifications at single-cell resolution remain low-throughput, costly, or limited in parametric depth. Here we present EpiFlow, a spectral flow cytometry-based platform that enables the simultaneous quantification of 16 epigenetic markers, including histone post-translational modifications, DNA methylation, and hydroxymethylation, at the single-cell level. We demonstrate that EpiFlow is robust across species from yeast to mammals and resolves biologically meaningful epigenetic transitions during the cell cycle, stem cell differentiation, germinal centre B cell maturation, diabetic liver remodelling, and seizure-induced chromatin reprogramming. High-dimensional integration of EpiFlow data enables cell-type classification based solely on epigenetic profiles in liver, brain, blood, and cancer. Furthermore, EpiFlow detects on-target and off-target/indirect effects of epigenetic drugs in a high-throughput-compatible format. Collectively, these results establish EpiFlow as a broadly applicable platform for single-cell epigenetic analysis in basic, pharmaceutical, and translational research.
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