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A roadmap for enriching rare cell populations from human post-mortem brain, demonstrated by 100% microglial purity.

Created on 24 Jul 2026

Authors

Gocmanac, I., Dash, H., Weinert, M., Nott, A., Nagaeva, E., Skene, N. G.

Abstract

Understanding brain disease requires studying the specific cell types that drive each condition: microglia in Alzheimer's, dopaminergic neurons in Parkinson's, motor neurons in ALS, and many others. For most of these rare populations, protocols to isolate them from human post-mortem brain at the required purity have never been developed. The shared hurdles are reliable nuclear markers, compatible fluorescent dyes, antibody host-species cross-reactivity, and achieving pure rather than merely enriched populations. Here we present a generalisable roadmap for developing fluorescence-activated nuclear sorting (FANS) protocols for rare cell populations in human brain. We demonstrate it on microglia, reaching 100% purity in cortex and 98% in cerebellum, with the cortex sort simultaneously yielding astrocytes at 93% purity. The roadmap tackles each hurdle including an on-bench antibody labelling step that expands fluorescence channels without cross-reactivity problem and an affordable single-nucleus RNA-seq validation workflow, giving labs a pathway for enriching any rare cell type reliably.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 24 Jul 2026.

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