Transplantation of Human IPSC-derived Microglia Ameliorates Neuropathology and Circuit Dysfunction in Progranulin-Deficient Mice
Davtyan, H.; Naguib, S.; Voskobiynyk, Y.; Chadarevian, J. P.; Capocchi, J. K.; Giacchino, J. L.; Eskandari-Sedighi, G.; Denittis, V.; Ford, J.; Agababian, A.; Nguyen, J.; Chadarevian, A.; Sutherland, M.; Shabestari, S. K.; Nanali, A.; Zhang, J.; Spina, S.; Wong, M. Y.; Grinberg, L. T.; Seeley, W. W.; Huang, E.; Clelland, C. D.; Gong, S.; Fan, L.; Paz, J. T.; Blurton-Jones, M.; Gan, L.
Show abstract
Frontotemporal dementia (FTD) is a major cause of early-onset neurodegeneration characterized by progressive behavioral, emotional, and cognitive decline. Progranulin haploinsufficiency, a leading genetic cause of familial FTD, disrupts lysosomal function, lipid metabolism, autophagy, and neuroimmune signaling across multiple cell types. Increasing evidence indicates that microglia are particularly sensitive to progranulin loss, exhibiting elevated complement activation that contributes to TDP-43 proteinopathy and neuronal dysfunction. Here, we investigate the biological role of restoring progranulin exclusively within microglia by transplanting human induced pluripotent stem cell-derived microglia (iMG) into progranulin (Grn)-deficient mice. We find that wild-type, but not Grn-deficient, human iMG restore brain-wide progranulin levels, normalize microglial transcriptional states, and ameliorate pathological, functional, and behavioral phenotypes associated with progranulin loss. Because microglia are the only source of progranulin in this system, these findings demonstrate that microglial progranulin is sufficient to restore key aspects of cellular, circuit, and behavioral homeostasis in a progranulin-deficient FTD model. More broadly, this work highlights a central, microglia-intrinsic role for progranulin in maintaining brain function and provides a framework for dissecting microglia-specific mechanisms across FTD and related neurodegenerative disorders. One Sentence SummaryOur study demonstrates that xenotransplantation of wild-type human iPSC-derived microglia into progranulin-deficient mice mitigates core neuropathological, network-level, and behavioral features of Frontotemporal Dementia.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The transcriptional response of cortical neurons to concussion reveals divergent fates after injury 97%
- Senescent-like microglia limit remyelination through the senescence associated secretory phenotype 97%
- Genetically perturbed myelin as a risk factor for neuroinflammation-driven axon degeneration 97%
Similar papers in this journal
- Natural genetic variation determines microglia heterogeneity in wild-derived mouse models of Alzheimer's disease 96%
- Defining the molecular identity and morphology of glia limitans superficialis astrocytes in mouse and human 96%
- Spatiotemporal analysis of gene expression in the human dentate gyrus reveals age-associated changes in cellular maturation and neuroinflammation 95%
Similar papers in this journal
- ZBTB7A regulates MDD-specific chromatin signatures and astrocyte-mediated stress vulnerability in orbitofrontal cortex 97%
- Brain-Engrafted Monocyte-derived Macrophages from Blood and Skull-Bone Marrow Exhibit Distinct Identities from Microglia 97%
- The Alzheimers Disease Risk Genes MS4A4A And MS4A6A Cooperate to Negatively Regulate Trem2 and Microglia states 97%
Similar papers in this journal
- Cognitive dysfunction following brain trauma results from sex-specific reactivation of the developmental pruning processes 95%
- SLC35A2 loss of function variants affect glycomic signatures, neuronal fate, and network dynamics 95%
- Cerebral Organoids Containing an AUTS2 Missense Variant Model Microcephaly 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.