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Updated: Jun 16, 2026

A Mouse Model of Orthopedic Surgery to Study Postoperative Cognitive Dysfunction and Tissue Regeneration
Published on: February 27, 2018
Dexmedetomidine inhibits microglia ferroptosis to relieve postoperative cognitive dysfunction in elderly rats through
Yunfei Wang1, Feng Ouyang2, Run Feng1
1Department of Anesthesiology, Wuhan No.1 Hospital, No. 215 Zhongshan Avenue, Qiaokou District, Wuhan, 430000, Hubei Province, China.
Background:
Postoperative cognitive dysfunction (POCD) is a prevalent neurological consequence in aged patients, with neuroinflammation and ferroptosis implicated in its pathogenesis. This study investigates whether dexmedetomidine (DEX) alleviates POCD by modulating the JPX/HIF-1α/DHODH axis.
Method:
Aged Sprague-Dawley rats received excision of the right common carotid artery to establish POCD. DEX (12 μg/kg) was administered preoperatively. Cognitive performance was evaluated through behavioral paradigms including spatial navigation tasks (Morris water maze) and recognition memory assessments (novel object test). Hippocampal ferroptosis markers (Fe2⁺, MDA, SOD, GSH) and protein levels (SLC7A11, GPX4, Iba1) were measured. BV-2 microglial cells were subjected to LPS treatment in vitro to induce neuroinflammation. RNA immunoprecipitation, chromatin immunoprecipitation, and dual-luciferase assays were performed to validate JPX/HIF-1α/DHODH interactions. Rescue assays were used to verify the role of JPX/HIF-1α/DHODH axis on ferroptosis of BV-2 cells.
Result:
DEX ameliorated cognitive deficits and suppressed hippocampal ferroptosis. Mechanistically, JPX recruits HIF-1α to transcriptionally activate DHODH expression, while DEX upregulated JPX to facilitate HIF-1α-mediated DHODH transcription. In BV-2 cells, DEX attenuated LPS-induced ferroptosis, whereas JPX silencing abolished its effects. DHODH overexpression counteracted siJPX's exacerbation of ferroptosis.
Conclusion:
DEX alleviates POCD by inhibiting microglial ferroptosis via the JPX/HIF-1α/DHODH axis, providing a novel therapeutic target for POCD intervention.
