Detrimental influence of Arginase-1 in infiltrating macrophages on poststroke functional recovery and inflammatory milieu

H Hyung Soon Kim (Department of Brain Science, Ajou University School of Medicine) S Seung Ah Jee (Department of Brain Science, Ajou University School of Medicine) A Ariandokht Einisadr (Department of Brain Science, Ajou University School of Medicine) Y Yeojin Seo (Department of Brain Science, Ajou University School of Medicine) H Hyo Gyeong Seo (Department of Brain Science, Ajou University School of Medicine) B Byeong Seong Jang (Department of Brain Science, Ajou University School of Medicine) H Hee Hwan Park (Department of Brain Science, Ajou University School of Medicine) W Won-Suk Chung (Department of Biological Sciences, Korea Advanced Institute of Science and Technology) B Byung Gon Kim (Department of Brain Science, Ajou University School of Medicine)

Abstract

Poststroke inflammation critically influences functional outcomes following ischemic stroke. Arginase-1 (Arg1) is considered a marker for anti-inflammatory macrophages, associated with the resolution of inflammation and promotion of tissue repair in various pathological conditions. However, its specific role in poststroke recovery remains to be elucidated. This study investigates the functional impact of Arg1 expressed in macrophages on poststroke recovery and inflammatory milieu. We observed a time-dependent increase in Arg1 expression, peaking at 7 d after photothrombotic stroke in mice. Cellular mapping analysis revealed that Arg1 was predominantly expressed in LysM-positive infiltrating macrophages. Using a conditional knockout (cKO) mouse model, we examined the role of Arg1 expressed in infiltrating macrophages. Contrary to its presumed beneficial effects, Arg1 cKO in LysM-positive macrophages significantly improved skilled forelimb motor function recovery after stroke. Mechanistically, Arg1 cKO attenuated fibrotic scar formation, enhanced peri-infarct remyelination, and increased synaptic density while reducing microglial synaptic elimination in the peri-infarct cortex. Gene expression analysis of fluorescence-activated single cell sorting (FACS)-sorted CD45 low microglia revealed decreased transforming growth factor-β (TGF-β) signaling and proinflammatory cytokine activity in peri-infarct microglia from Arg1 cKO animals. In vitro coculture experiments demonstrated that Arg1 activity in macrophages modulates microglial synaptic phagocytosis, providing evidence for macrophage–microglia interaction. These findings present unique insights into the function of Arg1 in central nervous system injury and highlight an interaction between infiltrating macrophages and resident microglia in shaping the poststroke inflammatory milieu. Our study identifies Arg1 in macrophages as a potential therapeutic target for modulating poststroke inflammation and improving functional recovery.

Article Details

Volume / Issue Vol. 122, Issue 7
Published February 18, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

H

Hyung Soon Kim

Department of Brain Science, Ajou University School of Medicine

S

Seung Ah Jee

Department of Brain Science, Ajou University School of Medicine

A

Ariandokht Einisadr

Department of Brain Science, Ajou University School of Medicine

Y

Yeojin Seo

Department of Brain Science, Ajou University School of Medicine

H

Hyo Gyeong Seo

Department of Brain Science, Ajou University School of Medicine

B

Byeong Seong Jang

Department of Brain Science, Ajou University School of Medicine

H

Hee Hwan Park

Department of Brain Science, Ajou University School of Medicine

W

Won-Suk Chung

Department of Biological Sciences, Korea Advanced Institute of Science and Technology

B

Byung Gon Kim

Department of Brain Science, Ajou University School of Medicine