S100A8‐enriched microglia populate the brain of tau‐seeded and accelerated aging mice

Author:

Gruel Roxane1ORCID,Bijnens Baukje23ORCID,Van Den Daele Johanna1ORCID,Thys Sofie1,Willems Roland4,Wuyts Dirk4,Van Dam Debby56ORCID,Verstraelen Peter1ORCID,Verboven Rosanne1ORCID,Roels Jana78ORCID,Vandamme Niels78ORCID,Mancuso Renzo23ORCID,Pita‐Almenar Juan Diego4ORCID,De Vos Winnok H.1910ORCID

Affiliation:

1. Laboratory of Cell Biology & Histology University of Antwerp Wilrijk Belgium

2. Microglia and Inflammation in Neurological Disorders (MIND) Lab, VIB Center for Molecular Neurology, VIB Antwerp Belgium

3. Department of Biomedical Sciences University of Antwerp Antwerp Belgium

4. Janssen Research and Development Neuroscience Therapeutic Area Beerse Belgium

5. Laboratory of Neurochemistry & Behaviour, Experimental Neurobiology Unit, Department of Biomedical Sciences University of Antwerp Antwerp Belgium

6. Department of Neurology and Alzheimer Center University of Groningen Groningen The Netherlands

7. VIB Single Cell Core, VIB Ghent‐Leuven Belgium

8. VIB‐UGent Center for Inflammation Research Ghent Belgium

9. Antwerp Centre for Advanced Microscopy University of Antwerp Antwerp Belgium

10. μNEURO research excellence consortium University of Antwerp Antwerp Belgium

Abstract

AbstractLong considered to fluctuate between pro‐ and anti‐inflammatory states, it has now become evident that microglia occupy a variegated phenotypic landscape with relevance to aging and neurodegeneration. However, whether specific microglial subsets converge in or contribute to both processes that eventually affect brain function is less clear. To investigate this, we analyzed microglial heterogeneity in a tauopathy mouse model (K18‐seeded P301L) and an accelerated aging model (Senescence‐Accelerated Mouse‐Prone 8, SAMP8) using cellular indexing of transcriptomes and epitopes by sequencing. We found that widespread tau pathology in K18‐seeded P301L mice caused a significant change in the number and morphology of microglia, but only a mild overrepresentation of disease‐associated microglia. At the cell population‐level, we observed a marked upregulation of the calprotectin‐encoding genes S100a8 and S100a9. In 9‐month‐old SAMP8 mice, we identified a unique microglial subpopulation that showed partial similarity with the disease‐associated microglia phenotype and was additionally characterized by a high expression of the same calprotectin gene set. Immunostaining for S100A8 revealed that this population was enriched in the hippocampus, correlating with the cognitive impairment observed in this model. However, incomplete colocalization between their residence and markers of neuronal loss suggests regional specificity. Importantly, S100A8‐positive microglia were also retrieved in brain biopsies of human AD and tauopathy patients as well as in a biopsy of an aged individual without reported pathology. Thus, the emergence of S100A8‐positive microglia portrays a conspicuous commonality between accelerated aging and tauopathy progression, which may have relevance for ensuing brain dysfunction.

Funder

Agentschap Innoveren en Ondernemen

Fonds Wetenschappelijk Onderzoek

Universiteit Antwerpen

Publisher

Wiley

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