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◆ Neurochemistry international2026-09-12

Pilot MRI study of carbon monoxide (CO) against ischemic stroke in mice: blood brain barrier integrity and metabolic pattern.

Sara R Oliveira, João Castelhano, José Sereno, Lorena Petrella, Carlos B Duarte, Miguel Castelo-Branco, Helena L A Vieira

原始摘要(英文原文)· Original abstract
Stroke remains the leading cause of brain injury worldwide, yet current therapeutic strategies primarily focus on restoring cerebral blood flow and do not directly target the brain parenchyma. Ischemic stroke, which accounts for approximately 87% of all cases, induces neuronal damage through depletion of oxygen and metabolic substrates, resulting in acidosis, inflammation, excitotoxicity, and oxidative stress. Carbon monoxide (CO) is an endogenous gasotransmitter generated by heme oxygenase-mediated degradation of heme. Increasing evidence indicates that CO exerts cytoprotective effects by attenuating inflammation and preventing cell death in multiple tissues, including the brain. Previous studies in the mouse middle cerebral artery occlusion (MCAo) model have shown that CO administration prior to ischemia produces histological neuroprotection. The present pilot study introduces two main novelties. First, CO was administered after stroke onset, providing a more clinically relevant therapeutic framework. Second, a multimodal imaging approach was employed to characterize the effects of CO at metabolic, vascular, and anatomical levels. Neuroprotection following MCAo was evaluated using three intraperitoneal injections of the CO-releasing molecule CORM-A1 (3 mg/kg), administered 6, 24, and 48 h after reperfusion. Magnetic resonance imaging was performed at 1 and 7 days post-reperfusion, including T2-weighted and diffusion-weighted sequences, proton spectroscopy (1H-MRS), and dynamic contrast-enhanced perfusion imaging. Motor activity was evaluated by Open Field and Vertical Pole assays. Metabolite profiles obtained by 1H-MRS enabled comparison of metabolic signatures between early and later stages following MCAo. CORM-A1 treatment reduced BBB disruption and decreased the mortality rate at early phase. Thus, metabolite profiles revealed a dissociation between robust BBB protection and lack of metabolic preservation, suggesting that metabolic dysfunction occurs independently of BBB disruption. Overall, this pilot study suggests that CO may promote recovery after ischemic stroke, primarily by preserving BBB integrity and supporting brain metabolic function, but further studies are needed to confirm this effect.
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Pilot MRI study of carbon monoxide (CO) against ischemic stroke in mice: blood brain barrier integrity and metabolic pattern. — 科研速览 Science Skim