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  3. Microglial Activation and Connectivity in Alzheimer Disease and Aging.
 

Microglial Activation and Connectivity in Alzheimer Disease and Aging.

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BORIS DOI
10.48350/172644
Publisher DOI
10.1002/ana.26465
PubMed ID
36053756
Description
OBJECTIVE

Alzheimer disease (AD) is characterized by amyloid β (Aβ) plaques and neurofibrillary tau tangles, but increasing evidence suggests that neuroinflammation also plays a key role, driven by the activation of microglia. Aβ and tau pathology appear to spread along pathways of highly connected brain regions, but it remains elusive whether microglial activation follows a similar distribution pattern. Here, we assess whether connectivity is associated with microglia activation patterns.

METHODS

We included 32 Aβ-positive early AD subjects (18 women, 14 men) and 18 Aβ-negative age-matched healthy controls (10 women, 8 men) from the prospective ActiGliA (Activity of Cerebral Networks, Amyloid and Microglia in Aging and Alzheimer's Disease) study. All participants underwent microglial activation positron emission tomography (PET) with the third-generation mitochondrial 18 kDa translocator protein (TSPO) ligand [18 F]GE-180 and magnetic resonance imaging (MRI) to measure resting-state functional and structural connectivity.

RESULTS

We found that inter-regional covariance in TSPO-PET and standardized uptake value ratio was preferentially distributed along functionally highly connected brain regions, with MRI structural connectivity showing a weaker association with microglial activation. AD patients showed increased TSPO-PET tracer uptake bilaterally in the anterior medial temporal lobe compared to controls, and higher TSPO-PET uptake was associated with cognitive impairment and dementia severity in a disease stage-dependent manner.

INTERPRETATION

Microglial activation distributes preferentially along highly connected brain regions, similar to tau pathology. These findings support the important role of microglia in neurodegeneration, and we speculate that pathology spreads throughout the brain along vulnerable connectivity pathways. ANN NEUROL 2022.
Date of Publication
2022-11
Publication Type
Article
Subject(s)
600 - Technology::610 - Medicine & health
Language(s)
en
Contributor(s)
Rauchmann, Boris-Stephan
Brendel, Matthias
Franzmeier, Nicolai
Trappmann, Lena
Zaganjori, Mirlind
Ersoezlue, Ersin
Morenas-Rodriguez, Estrella
Guersel, Selim
Burow, Lena
Kurz, Carolin
Haeckert, Jan
Tatò, Maia
Utecht, Julia
Papazov, Boris
Pogarell, Oliver
Janowitz, Daniel
Buerger, Katharina
Ewers, Michael
Palleis, Carla
Weidinger, Endy
Biechele, Gloria
Schuster, Sebastian
Finze, Anika
Eckenweber, Florian
Rupprecht, Rainer
Rominger, Axel Oliverorcid-logo
Universitätsklinik für Nuklearmedizin
Goldhardt, Oliver
Grimmer, Timo
Keeser, Daniel
Stoecklein, Sophia
Dietrich, Olaf
Bartenstein, Peter
Levin, Johannes
Höglinger, Günter
Perneczky, Robert
Additional Credits
Universitätsklinik für Nuklearmedizin
Series
Annals of neurology
Publisher
Wiley-Blackwell
ISSN
0364-5134
Access(Rights)
open.access
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