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Methylene Blue Protects Against Sevoflurane-Induced Cognitive Dysfunction by Suppressing Drp1 deSUMOylation in Aged
Feng Zheng1, Peng Fang1, Jing Chang1
1Department of Anesthesiology, Zhongnan Hospital of Wuhan University, 169 Donghu Road, Wuhan, Hubei, 430071, China.
Abstract:
Exposure to sevoflurane and other inhalational anesthetics can induce cognitive impairment in elderly patients. Studies have indicated that methylene blue (MB) has beneficial effects on multiple neurodegenerative diseases and the mechanism involves mitochondrial function preservation. However, whether MB can attenuate the cognitive decline induced by sevoflurane in aged mice requires further investigation. Forty-five 18-month-old C57/BL mice were used to establish a model of sevoflurane-induced cognitive impairment in which the mice were exposed to 3% sevoflurane for 2 h. Mice in the MB group were intraperitoneally injected with MB at a dose of 5 mg/kg before sevoflurane inhalation. The Morris water maze test was used to evaluate the learning and memory performances. We also examined changes in mitochondrial morphology as well as the expression and interaction of related proteins in the aged hippocampus. Parkin, BCL2/adenovirus E1B 19 kDa protein-interacting protein 3 (BNIP3), mitochondrial dynamin-related protein 1 (Drp1), small ubiquitin-like modifier (SUMO2/3), SUMO-specific proteases 3 (SENP3), and ubiquitin-like conjugating enzyme 9 expression in the mouse hippocampus was detected by western blotting, and SUMO2/3-Drp1 was examined by coimmunoprecipitation. Exposure to sevoflurane increased SENP3 expression and Drp1 deSUMOylation in the aged hippocampus and resulted in cognitive deficiency. MB attenuated sevoflurane-induced memory loss and mitochondrial fragmentation and decreased Drp1 deSUMOylation in the aged hippocampus. This neuroprotective effect provides a mechanistic explanation for how the SUMOylation status of Drp1 acts as a key switch in the cognitive dysfunction induced by sevoflurane.
Insights
Methylene blue (MB) protects aged mice from sevoflurane-induced cognitive impairment by preserving mitochondrial function and reducing Drp1 deSUMOylation. This finding highlights MB
Area of Science:
- Neuroscience
- Pharmacology
- Gerontology
Background:
- Inhalational anesthetics like sevoflurane can cause cognitive impairment in elderly patients.
- Methylene blue (MB) shows promise in neurodegenerative diseases by preserving mitochondrial function.
- The potential of MB to counteract sevoflurane-induced cognitive decline in aged individuals remains under investigation.
Purpose of the Study:
- To investigate whether methylene blue (MB) can mitigate cognitive deficits induced by sevoflurane in aged mice.
- To explore the underlying mechanisms involving mitochondrial morphology and protein interactions in the hippocampus.
Main Methods:
- An aged mouse model was established using sevoflurane exposure.
- Mice received intraperitoneal injections of MB prior to sevoflurane inhalation.
- Cognitive performance was assessed using the Morris water maze test.
- Hippocampal mitochondrial morphology and protein expression (Parkin, BNIP3, Drp1, SUMO2/3, SENP3) were analyzed via Western blotting and co-immunoprecipitation.
Main Results:
- Sevoflurane exposure led to cognitive impairment, increased SENP3 expression, and enhanced Drp1 deSUMOylation in the aged hippocampus.
- Mice treated with MB exhibited attenuated memory loss and reduced mitochondrial fragmentation.
- MB administration decreased Drp1 deSUMOylation in the hippocampus following sevoflurane exposure.
Conclusions:
- Methylene blue demonstrates neuroprotective effects against sevoflurane-induced cognitive dysfunction in aged mice.
- MB mitigates memory deficits by preserving mitochondrial integrity and modulating the SUMOylation status of Drp1.
- The SUMOylation state of Drp1 is identified as a critical factor in sevoflurane-induced cognitive impairment.

