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  5. Neutrophil stalling does not mediate the increase in tau phosphorylation and the cognitive impairment associated with high salt diet

Neutrophil stalling does not mediate the increase in tau phosphorylation and the cognitive impairment associated with high salt diet

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File(s)
41208407.pdf (1.74 MB)
No Access Until
2026-12-18
Permanent Link(s)
https://hdl.handle.net/1813/123063
Collections
Brain and Mind Research Institute
Author
Ahn, S.-J.
Goya, B.
Bertomo, C.
Sciortino, R.
Racchumi, G.
Bonilla, L.G.
Anrather, J.
Iadecola, C.
Faraco, G.
Abstract

AIMS: High dietary salt intake has powerful effects on cerebral blood vessels and has emerged as a risk factor for stroke and cognitive impairment. In mice, high salt diet (HSD) leads to reduced cerebral blood flow (CBF), tau hyperphosphorylation and cognitive dysfunction. However, it is still unclear whether the reduced CBF is responsible for the effects of HSD on tau and cognition. Capillary stalling has been linked to cognitive impairment in models of Alzheimer's disease and diabetes. Therefore, we tested the hypothesis that capillary stalling also contributes to CBF reduction, tau accumulation, and cognitive impairment in HSD. METHODS AND RESULTS: We used in vivo two-photon imaging to assess capillary stalling in C57BL6/J male mice fed a normal diet or HSD. We found that HSD increased stalling of neutrophils in brain capillaries and decreased CBF. Neutrophil depletion using anti-Ly6G antibodies reduced the number of stalled capillaries and restored CBF, measured by red blood cell speed. Despite the improved CBF, chronic neutrophil depletion did not rescue HSD-induced cognitive impairment, assessed by Barnes maze and nest building behavior. Furthermore, levels of phosphorylated tau in cortex and hippocampus remained elevated in HSD mice after neutrophil depletion. CONCLUSIONS: These novel findings show that, capillary stalling contribute to CBF reduction in HSD, but not to tau phosphorylation and cognitive deficits. Therefore, the hypoperfusion caused by capillary stalling is not the main driver of the tau phosphorylation and cognitive impairment.

Journal / Series
Cardiovascular research
Volume & Issue
121(16)
Date Issued
2025-12-18
Publisher
Oxford University Press
Keywords
WCM Library Coordinated Deposit
•
Animals
•
tau Proteins/metabolism
•
Male
•
Phosphorylation
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Mice, Inbred C57BL
•
Cerebrovascular Circulation
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Disease Models, Animal
•
Sodium Chloride, Dietary
•
Cognition
•
Cognitive Dysfunction/physiopathology/metabolism/psychology/etiology
•
Neutrophils/metabolism
•
Capillaries/physiopathology/metabolism
•
Behavior, Animal
•
Hippocampus/metabolism/blood supply
•
Maze Learning
•
Brain/blood supply/metabolism
•
Cerebral Cortex/blood supply/metabolism
•
Capillary stalling
•
Cognitive impairment
•
High salt diet
•
Neutrophils
•
Tau phosphorylation
Related DOI
https://doi.org/10.1093/cvr/cvaf217
Previously Published as
Ahn S-J, Goya B, Bertomo C, Sciortino R, Racchumi G, Bonilla LG, Anrather J, Iadecola C, Faraco G. Neutrophil stalling does not mediate the increase in tau phosphorylation and the cognitive impairment associated with high salt diet. Cardiovascular research. 2025;121(16):2578-2593. doi: 10.1093/cvr/cvaf217. PMID: 41208407.
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International
Rights URI
https://creativecommons.org/licenses/by-nc-nd/4.0/
Type
article

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