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BMC Cardiovasc Disord ; 24(1): 266, 2024 May 21.
Article de Anglais | MEDLINE | ID: mdl-38773462

RÉSUMÉ

BACKGROUND: Cardiopulmonary bypass (CPB) results in brain injury, which is primarily caused by inflammation. Ac2-26 protects against ischemic or hemorrhage brain injury. The present study was to explore the effect and mechanism of Ac2-26 on brain injury in CPB rats. METHODS: Forty-eight rats were randomized into sham, CPB, Ac, Ac/AKT1, Ac/GSK3ßi and Ac/AKT1/GSK3ßa groups. Rats in sham group only received anesthesia and in the other groups received standard CPB surgery. Rats in the sham and CPB groups received saline, and rats in the Ac, Ac/AKT1, Ac/GSK3ßi and Ac/AKT1/GSK3ßa groups received Ac2-26 immediately after CPB. Rats in the Ac/AKT1, Ac/GSK3ßi and Ac/AKT1/GSK3ßa groups were injected with shRNA, inhibitor and agonist of GSK3ß respectively. The neurological function score, brain edema and histological score were evaluated. The neuronal survival and hippocampal pyroptosis were assessed. The cytokines, activity of NF-κB, S100 calcium-binding protein ß(S100ß) and neuron-specific enolase (NSE), and oxidative were tested. The NLRP3, cleaved-caspase-1 and cleaved-gadermin D (GSDMD) in the brain were also detected. RESULTS: Compared to the sham group, all indicators were aggravated in rats that underwent CPB. Compared to the CPB group, Ac2-26 significantly improved neurological scores and brain edema and ameliorated pathological injury. Ac2-26 reduced the local and systemic inflammation, oxidative stress response and promoted neuronal survival. Ac2-26 reduced hippocampal pyroptosis and decreased pyroptotic proteins in brain tissue. The protection of Ac2-26 was notably lessened by shRNA and inhibitor of GSK3ß. The agonist of GSK3ß recovered the protection of Ac2-26 in presence of shRNA. CONCLUSIONS: Ac2-26 significantly improved neurological function, reduced brain injury via regulating inflammation, oxidative stress response and pyroptosis after CPB. The protective effect of Ac2-26 primarily depended on AKT1/ GSK3ß pathway.


Sujet(s)
Pontage cardiopulmonaire , Modèles animaux de maladie humaine , Glycogen synthase kinase 3 beta , Protéines proto-oncogènes c-akt , Pyroptose , Rat Sprague-Dawley , Transduction du signal , Animaux , Pontage cardiopulmonaire/effets indésirables , Glycogen synthase kinase 3 beta/métabolisme , Protéines proto-oncogènes c-akt/métabolisme , Pyroptose/effets des médicaments et des substances chimiques , Mâle , Neurones/effets des médicaments et des substances chimiques , Neurones/anatomopathologie , Neurones/métabolisme , Neurones/enzymologie , Neuroprotecteurs/pharmacologie , Protéine-3 de la famille des NLR contenant un domaine pyrine/métabolisme , Oedème cérébral/prévention et contrôle , Oedème cérébral/métabolisme , Oedème cérébral/enzymologie , Oedème cérébral/anatomopathologie , Anti-inflammatoires/pharmacologie , Rats , Sous-unité bêta de la protéine liant le calcium S100/métabolisme , Médiateurs de l'inflammation/métabolisme
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