TREM2 deficiency causes region-specific brain effects in a mouse model of cerebral amyloid angiopathy

Cerebral amyloid angiopathy (CAA), a major vascular contributor to cognitive decline, is present in 85–95% of Alzheimer’s disease (AD) patients. Despite its high prevalence, the mechanisms by which CAA contributes to neurodegeneration remain poorly understood. Triggering receptor expressed on myeloid cells 2 (TREM2), an innate immune receptor expressed exclusively by microglia, regulates activation, phagocytosis, and amyloid clearance, thereby shaping neuroinflammation. Loss-of-function mutations in TREM2 markedly increase AD risk, but its role in CAA pathology remains unknown. To investigate this, we crossed the Familial Danish Dementia (Tg-FDD) mouse model, which accumulates robust vascular amyloid, with TREM2 knockout ( mTrem2 -/- ) mice to generate Tg-FDD/ mTrem2 -/- animals. Histological and transcriptomic analyses revealed region-specific effects of TREM2 deficiency. In the cortex, TREM2 loss markedly reduced vascular amyloid deposition, accompanied by decreased tau pathology. In contrast, in the cerebellum, TREM2 deletion exacerbated vascular amyloid accumulation, promoted astrogliosis, and enhanced tau pathology. Transcriptomic profiling further identified distinct neuroinflammatory signatures between cortex and cerebellum, particularly in cytokine signaling, matrix remodeling, and lipid metabolism. Together, these findings demonstrate that TREM2 deficiency leads to region-specific effects on CAA, revealing extensive regional variability in vascular amyloid pathology and underscoring the importance of considering these differences when developing TREM2-based therapies.

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Journal
Journal of Neuroinflammation
Published
2026-09-26
DOI
https://doi.org/10.1186/s12974-026-04065-x
Primary Topic
Neuroinflammation and Neurodegeneration Mechanisms
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article
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article

TREM2 deficiency causes region-specific brain effects in a mouse model of cerebral amyloid angiopathy

Nur Jury, Jonathan Martínez-Pinto, Cristian A. Lasagna‐Reeves, Armando Amaro et al.
Journal of Neuroinflammation
Neuroinflammation and Neurodegeneration Mechanisms
article

TREM2 deficiency causes region-specific brain effects in a mouse model of cerebral amyloid angiopathy

Nur Jury, Jonathan Martínez-Pinto, Cristian A. Lasagna‐Reeves, Armando Amaro, Constanza Mercado, Ruben Vidal
article en

Abstract

Cerebral amyloid angiopathy (CAA), a major vascular contributor to cognitive decline, is present in 85–95% of Alzheimer’s disease (AD) patients. Despite its high prevalence, the mechanisms by which CAA contributes to neurodegeneration remain poorly understood. Triggering receptor expressed on myeloid cells 2 (TREM2), an innate immune receptor expressed exclusively by microglia, regulates activation, phagocytosis, and amyloid clearance, thereby shaping neuroinflammation. Loss-of-function mutations in TREM2 markedly increase AD risk, but its role in CAA pathology remains unknown. To investigate this, we crossed the Familial Danish Dementia (Tg-FDD) mouse model, which accumulates robust vascular amyloid, with TREM2 knockout ( mTrem2 -/- ) mice to generate Tg-FDD/ mTrem2 -/- animals. Histological and transcriptomic analyses revealed region-specific effects of TREM2 deficiency. In the cortex, TREM2 loss markedly reduced vascular amyloid deposition, accompanied by decreased tau pathology. In contrast, in the cerebellum, TREM2 deletion exacerbated vascular amyloid accumulation, promoted astrogliosis, and enhanced tau pathology. Transcriptomic profiling further identified distinct neuroinflammatory signatures between cortex and cerebellum, particularly in cytokine signaling, matrix remodeling, and lipid metabolism. Together, these findings demonstrate that TREM2 deficiency leads to region-specific effects on CAA, revealing extensive regional variability in vascular amyloid pathology and underscoring the importance of considering these differences when developing TREM2-based therapies.

Journal of Neuroinflammation
Baylor College of Medicine (US), Indiana University School of Medicine, Indiana University – Purdue University Indianapolis (US), University of Valparaíso (CL)
Good health and well-being
Openalex Percentile: Top 14%
Neuroinflammation and Neurodegeneration Mechanisms
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