Pathophysiological Role of Perivascular Macrophages in Blood–Brain Barrier Dysfunction Induced by Cerebral Hypoperfusion in Mice

This study investigated the role of perivascular macrophages (PVMs), localized alongside the brain vasculature, in blood-brain barrier (BBB) dysfunction induced by reduced cerebral blood flow (CBF). Using a mouse model of bilateral carotid artery stenosis (BCAS) to examine cerebral hypoperfusion, the effects of pharmacological depletion of PVM-enriched macrophage populations were examined using clodronate liposomes. The results demonstrated that while cerebral hypoperfusion significantly increased BBB permeability, depletion of PVM-enriched macrophage populations attenuated this leakage. Mechanistic analyses suggested that PVM-associated responses may be linked to reduced pericyte marker expression, astrocyte activation, and increased MMP-2/9 expression. Furthermore, depletion of PVM-enriched macrophage populations inhibited the upregulation of matrix metalloproteinase-2 (MMP-2) and MMP-9. These findings suggest that PVM-enriched macrophage populations are involved in early BBB dysfunction following cerebral hypoperfusion, possibly through changes in pericyte-associated vascular integrity, astrocyte activation, and MMP-2/9-related tight junction remodeling. These results provide insight into vascular inflammatory mechanisms that may contribute to hypoperfusion-associated BBB dysfunction and later small vessel pathology.

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Journal
Neurochemical Research
Published
2026-09-11
DOI
https://doi.org/10.1007/s11064-026-04881-w
Primary Topic
Neurological Disease Mechanisms and Treatments
Type
article
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article

Pathophysiological Role of Perivascular Macrophages in Blood–Brain Barrier Dysfunction Induced by Cerebral Hypoperfusion in Mice

Yoshiyuki Moriyama, Yui Iwatani, Hideki Hayashi, Norio Takagi et al.
Neurochemical Research
Neurological Disease Mechanisms and Treatments
article

Pathophysiological Role of Perivascular Macrophages in Blood–Brain Barrier Dysfunction Induced by Cerebral Hypoperfusion in Mice

Yoshiyuki Moriyama, Yui Iwatani, Hideki Hayashi, Norio Takagi, Sayaka Matsumura, Ayumi Ochiai
article en

Abstract

This study investigated the role of perivascular macrophages (PVMs), localized alongside the brain vasculature, in blood-brain barrier (BBB) dysfunction induced by reduced cerebral blood flow (CBF). Using a mouse model of bilateral carotid artery stenosis (BCAS) to examine cerebral hypoperfusion, the effects of pharmacological depletion of PVM-enriched macrophage populations were examined using clodronate liposomes. The results demonstrated that while cerebral hypoperfusion significantly increased BBB permeability, depletion of PVM-enriched macrophage populations attenuated this leakage. Mechanistic analyses suggested that PVM-associated responses may be linked to reduced pericyte marker expression, astrocyte activation, and increased MMP-2/9 expression. Furthermore, depletion of PVM-enriched macrophage populations inhibited the upregulation of matrix metalloproteinase-2 (MMP-2) and MMP-9. These findings suggest that PVM-enriched macrophage populations are involved in early BBB dysfunction following cerebral hypoperfusion, possibly through changes in pericyte-associated vascular integrity, astrocyte activation, and MMP-2/9-related tight junction remodeling. These results provide insight into vascular inflammatory mechanisms that may contribute to hypoperfusion-associated BBB dysfunction and later small vessel pathology.

Neurochemical ResearchVol. 51(5)
Tokyo University of Pharmacy and Life Sciences (JP)
Good health and well-being
Openalex Percentile: Top 13%
Neurological Disease Mechanisms and Treatments
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Pathophysiological Role of Perivascular Macrophages in Blood–Brain Barrier Dysfunction Induced by Cerebral Hypoperfusion in Mice — Yoshiyuki Moriyama, Yui Iwatani, et al. · Neurochemical Research (2026) | TGRS Research Map | TGRS