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OBJECTIVE: Previous studies have demonstrated that electroacupuncture (EA) exerts a protective effect in middle cerebral artery occlusion (MCAO) rats and may improve motor function, but the specific mechanism involved remains to be elucidated. This study aimed to further investigate the effects of EA at the Quchi (LI11) and Zusanli (ST36) acupoints on ischemic stroke motor function and the underlying mechanism. METHODS: Following the establishment of MCAO model, the rats in EA group were treated at LI11 and ST36 acupoints. Catwalk gait analysis was used to assess ethology. T2 weighted imaging was used to assess cerebral infarct volume. H&E and Nissl staining was used to assess cortical morphology. Glucose metabolism was detected by chemical exchange saturation transfer (CEST). Chemiluminescence was used to detect the cortical adenosine triphosphate (ATP). Mitochondrial morphological changes were observed by transmission electron microscopy(TEM). The protein and mRNA expressions of mitochondrial dynamics related genes Drp1, Fis1, Mfn2, Mfn1 and Opa1 were detected by western blot and qPCR respectively. RESULTS: EA intervention improved gait dynamics, reduced cerebral infarct volume, ameliorated cortical pathological morphological changes and neuronal loss. EA significantly alleviated mitochondrial morphological changes. EA improved mitochondrial dynamic disorder by significantly increasing the expression of Opa1 and inhibiting the expression of Drp1, thus improving glucose metabolism and ATP production. CONCLUSIONS: EA could regulate mitochondrial dynamics to improve glucose metabolism dysfunction, thereby restoring motor function in MCAO.
Li et al. (Fri,) studied this question.