ArticleCell & bioscience2023
Remote ischemic preconditioning protects against spinal cord ischemia-reperfusion injury in mice by activating NMDAR/AMPK/PGC-1α/SIRT3 signaling.
Article in Cell & bioscience, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 18 papers.
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Who cites it
18 citing papers in PubMed, 23 citations in OpenAlex.
- A lesion-responsive ZIF-8/zinc-myricetin nano-biointerface remodels mitochondrial-immune crosstalk for spinal cord repair.Materials today. Bio · 2026Article
- Targeted nanovesicular delivery of dexmedetomidine modulates microglial lysosomal function via Sirt3 signaling to ameliorate neurodegenerative pathology.Neural regeneration research · 2026Article
- Emerging role of copper in the pathophysiology of spinal cord injury.Neural regeneration research · 2026Article
- Targeting microglial PANoptosis through AMPK activation: Metformin as a promising therapy for spinal cord injury.Journal of pharmaceutical analysis · 2026Article
- Ischemic preconditioning enhances autonomic nervous system modulation during frequency speed of kick test in taekwondo athletes: a randomized crossover study.BMC sports science, medicine & rehabilitation · 2026Article
- Evaluation of the direct effect of remote ischemic preconditioning on the rabbit's kidney by RBMC medical imaging · 2026Article
- Paeoniflorin Ameliorates Spinal Cord Injury by Controlling Apoptosis and Ferroptosis in HImmunity, inflammation and disease · 2026Article
- Hypoxic exosomes alleviated the spinal cord injury after ischemic/reperfusion in a rat model.Advanced pharmaceutical bulletin · 2025Article
- Mitochondrial dynamics reveal potential to facilitate axonal regeneration after spinal cord injury.Journal of translational medicine · 2025Review
- The NFATC2/Nrf2 cascade regulates spinal cord ischemia-reperfusion injury by controlling inflammation, apoptosis and oxidative stress.Regenerative therapy · 2025Article
- The mechanism and therapeutic potential of SIRT3 in central nervous system diseases: a review.Frontiers in pharmacology · 2025Review
- Roles of SIRT3 in aging and aging-related diseases.International journal of biological sciences · 2025Review
- Irisin protects against cerebral ischemia reperfusion injury in a SIRT3-dependent manner.Frontiers in pharmacology · 2025Article
- Exploration of biomarkers associated with histone lactylation modification in spinal cord injury.Frontiers in genetics · 2025Article
- Dose-Dependent Modulation of NMDA Receptors: Neuroprotective Mechanisms against Oxidative Stress in Hippocampal Neurons.International journal of molecular and cellular medicine · 2025Article
- The New Orientation of Postoperative Analgesia: Remote Ischemic Preconditioning.Journal of pain research · 2024Review
- The lactate metabolism and protein lactylation in epilepsy.Frontiers in cellular neuroscience · 2024Review
- Effect of mitochondrial dysfunction on scar formation after spinal cord injury.Frontiers in neurologyReview
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Authors and funding
6 authors at 3 institutions in 1 country.
Funding
Abstract
backgroundTo study the protective effects of delayed remote ischemic preconditioning (RIPC) against spinal cord ischemia-reperfusion injury (SCIRI) in mice and determine whether SIRT3 is involved in this protection and portrayed its upstream regulatory mechanisms.
methodsIn vivo, WT or SIRT3 global knockout (KO) mice were exposed to right upper and lower limbs RIPC or sham ischemia. After 24 h, the abdominal aorta was clamped for 20 min, then re-perfused for 3 days. The motor function of mice, number of Nissl bodies, apoptotic rate of neurons, and related indexes of oxidative stress in the spinal cord were measured to evaluate for neuroprotective effects. The expression and correlation of SIRT3 and NMDAR were detected by WB and immunofluorescence. In vitro, primary neurons were exacted and OGD/R was performed to simulate SCIRI in vivo. Neuronal damage was assessed by observing neuron morphology, detecting LDH release ratio, and flow cytometry to analyze the apoptosis. MnSOD and CAT enzyme activities, GSH and ROS level were also measured to assess neuronal antioxidant capacity. NMDAR-AMPK-PGC-1α signaling was detected by WB to portray upstream regulatory mechanisms of RIPC regulating SIRT3.
resultsCompared to the SCIRI mice without RIPC, mice with RIPC displayed improved motor function recovery, a reduced neuronal loss, and enhanced antioxidant capacity. To the contrary, the KO mice did not exhibit any effect of RIPC-induced neuroprotection. Similar results were observed in vitro. Further analyses with spinal cord tissues or primary neurons detected enhanced MnSOD and CAT activities, as well as increased GSH level but decreased MDA or ROS production in the RIPC + I/R mice or NMDA + OGD/R neurons. However, these changes were completely inhibited by the absence of SIRT3. Additionally, NMDAR-AMPK-PGC-1α signaling was activated to upregulate SIRT3 levels, which is essential for RIPC-mediated neuroprotection.
conclusionsRIPC enhances spinal cord ischemia tolerance in a SIRT3-dependent manner, and its induced elevated SIRT3 levels are mediated by the NMDAR-AMPK-PGC-1α signaling pathway. Combined therapy targeting SIRT3 is a promising direction for treating SCIRI.
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