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[Preprint]. 2024 Nov 14:2024.11.12.623183. [Version 1] doi: 10.1101/2024.11.12.623183

Single-cell transcriptomic landscape of the neuroimmune compartment in amyotrophic lateral sclerosis brain and spinal cord

John F Tuddenham, Masashi Fujita, Anthony Khairallah, Claire Harbison, Xena E Flowers, Guillermo Coronas-Samano, Silas Maniatis, Aidan Daly, Julie A Schneider, Andrew F Teich, Jean Paul G Vonsattel, Peter A Sims, Wassim Elyaman, Elizabeth M Bradshaw, Hemali Phatnani, Neil Shneider, David A Bennett, Philip L De Jager, Serge Przedborski, Vilas Menon, Marta Olah
PMCID: PMC11601279  PMID: 39605399

Abstract

Development of therapeutic approaches that target specific microglia responses in amyotrophic lateral sclerosis (ALS) is crucial due to the involvement of microglia in ALS progression. Our study identifies the predominant microglia subset in human ALS primary motor cortex and spinal cord as an undifferentiated phenotype with dysregulated respiratory electron transport. Moreover, we find that the interferon response microglia subset is enriched in donors with aggressive disease progression, while a previously described potentially protective microglia phenotype is depleted in ALS. Additionally, we observe an enrichment of non-microglial immune cell, mainly NK/T cells, in ALS central nervous system, primarily in the spinal cord. These findings pave the way for the development of microglia subset-specific therapeutic interventions to slow or even stop ALS progression.

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