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Cell reports methods
Published

Human MAPT knockin mouse models of frontotemporal dementia for the neurodegenerative research community

Authors

Takahiro Morito, Mohan Qi, Naoko Kamano, Hiroki Sasaguri, Sumi Bez, Martha Foiani, Karen Duff, Seico Benner, Toshihiro Endo, Hiroshi Hama, Hiroshi Kurokawa, Atushi Miyawaki, Hiroshi Mizuma, Naruhiko Sahara, Masafumi Shimojo, Makoto Higuchi, Takaomi C Saido, Naoto Watamura

Abstract

Cell Rep Methods. 2025 Apr 8:101024. doi: 10.1016/j.crmeth.2025.101024. Online ahead of print.

ABSTRACT

Existing models of frontotemporal dementia (FTD) may not fully recapitulate the pathophysiology of the disease. To generate more pathophysiologically relevant FTD models, we engineered MAPT knockin mouse lines carrying triple mutations, among which the MAPTP301S;Int10+3;S320F line exhibited robust tau pathology starting before 6 months of age. Severe tau accumulation was predominantly observed in the thalamus, hypothalamus, and amygdala with milder involvement of the cortex and hippocampus, leading to synaptic loss, brain atrophy, and FTD-like behavioral abnormalities. Crossbreeding MAPTP301S;Int10+3;S320F mice with App knockin, AppNL-G-F, mice markedly enhanced tau pathology in the cortex and hippocampus, highlighting the interplay between β-amyloid and tau. These findings establish the mutant mice as valuable models for investigating the mechanisms underlying FTD and other tauopathies, providing a relevant platform for in vivo drug screening.

PMID:40220760 | DOI:10.1016/j.crmeth.2025.101024

UK DRI Authors

Karen Duff

Prof Karen Duff

Centre Director

Revealing the molecular causes and consequences of tauopathy in Alzheimer's disease and frontotemporal dementia

Prof Karen Duff