Related Experiment Video
Updated: Aug 12, 2025

Use of a Hanging Weight System for Coronary Artery Occlusion in Mice
Published on: April 19, 2011
Isoflurane Postconditioning Alleviates Ischemic Neuronal Injury Via MiR-384-5p Regulated Autophagy
Abstract:
The purpose of the study was to investigate the effect of isoflurane postconditioning on neuron injury in MCAO (middle cerebral artery occlusion) rats and its molecular mechanism of affecting autophagy through miR-384-5p/ATG5 (autophagy-related protein 5). HT22 cells (mouse hippocampal neuronal cell line) were exposed to 1.5% isoflurane for 30 min after OGD/R (oxygen-glucose deprivation/reoxygenation). Flow cytometry and CCK-8 kit were used to analyze changes in apoptosis and cell viability. The level of miR-384-5p was detected by qRT-PCR. Targetscan database prediction combined with dual luciferase reporter gene assay confirmed ATG5 as a target molecule downstream of miR-384-5p. In addition, western blot results confirmed that isoflurane postconditioning regulated miR-384-5p/ATG5 and significantly inhibited the expression of apoptosis-related proteins. Meanwhile, immunofluorescence staining for LC3II positivity combined with western blot results revealed that isoflurane postconditioning significantly inhibited autophagy. In vivo, MCAO induced neuronal injury for 90 min, followed by 24-h reperfusion. Isoflurane postconditioning (Iso) group underwent 1.5% isoflurane postconditioning for 60 min after reperfusion. Neurological scoring and TTC staining were used to evaluate the protective effect of isoflurane post-treatment on neurological injury, respectively. TUNEL staining and western blot results confirmed that isoflurane post-conditioning could regulate miR-384-5p and inhibit apoptosis. Immunofluorescence staining and western blot results confirmed that isoflurane post-conditioning inhibited autophagy in MCAO rats. Based on the above results, we speculated that the molecular mechanism of isoflurane post-conditioning to alleviate ischemic neuronal injury may be related to the regulation of miR-384-5p/ATG5-mediated autophagy.
Insights
Isoflurane postconditioning protects against ischemic neuron injury by inhibiting autophagy via the miR-384-5p/ATG5 pathway. This study reveals a novel mechanism for neuroprotection in middle cerebral artery occlusion (MCAO) rats.
Area of Science:
- Neuroscience
- Molecular Biology
- Anesthesiology
Background:
- Ischemic stroke, such as middle cerebral artery occlusion (MCAO), causes significant neuronal injury.
- Autophagy plays a complex role in ischemic brain injury, and its modulation is a potential therapeutic target.
- Isoflurane is a widely used anesthetic agent with potential neuroprotective properties.
Purpose of the Study:
- To investigate the neuroprotective effects of isoflurane postconditioning in a rat model of MCAO.
- To elucidate the molecular mechanism underlying isoflurane's effects, focusing on the miR-384-5p/ATG5 pathway and autophagy.
- To assess the impact of isoflurane postconditioning on neuronal apoptosis and cell viability.
Main Methods:
- In vitro: HT22 cells subjected to oxygen-glucose deprivation/reoxygenation (OGD/R) and treated with isoflurane.
- In vivo: MCAO rat model with isoflurane postconditioning.
- Assays: Flow cytometry, CCK-8, qRT-PCR, dual luciferase reporter assay, western blot, immunofluorescence staining, neurological scoring, TTC staining, TUNEL staining.
Main Results:
- Isoflurane postconditioning significantly reduced neuronal apoptosis and improved cell viability in vitro and in vivo.
- Isoflurane postconditioning downregulated miR-384-5p and inhibited autophagy by targeting ATG5.
- The study confirmed ATG5 as a downstream target of miR-384-5p.
- Isoflurane postconditioning alleviated neurological deficits and reduced infarct volume in MCAO rats.
Conclusions:
- Isoflurane postconditioning exerts neuroprotective effects against ischemic injury in MCAO rats.
- The mechanism involves the regulation of the miR-384-5p/ATG5 axis, leading to the inhibition of autophagy.
- These findings suggest that isoflurane postconditioning is a promising therapeutic strategy for ischemic stroke.

