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Author Spotlight: Establishing a Reliable Distal MCA Occlusion Model in Mice for Stroke Research
Published on: December 15, 2023
Cottonseed oil alleviates ischemic stroke injury by inhibiting ferroptosis
Miao Sun1,2, Min Liu3, Qingxiao Li4
1Department of Anesthesiology, The First Medical Center of Chinese PLA General Hospital, Beijing, China.
Introduction:
Ferroptosis has recently been recognized as a new cause of ischemia reperfusion injury due to blood-brain barrier (BBB) disruption followed by secondary iron-loaded transferrin (TF) influx. As a novel and independent cell death pathway, ferroptosis was characterized by iron-dependent lipid peroxidation, decline of GSH, GPX4, and shrinking mitochondria. Cottonseed oil (CSO), a liposoluble solvent, can alleviate ischemia stroke injuries and oxidative stress. However, the effect of CSO on ischemic stroke-induced ferroptosis has not been explored. In this study, we investigated the effect of CSO on ferroptosis caused by cerebral ischemic injury in rats.
Methods:
We conducted the subcutaneous injection of 1.3 mL/kg CSO every other day for 3 weeks on rats with middle cerebral artery occlusion-reperfusion (MCAO-R) injury. We used Garcia Test, TTC staining, HE, Nissl and NeuN staining, Evans blue test, 68 Ga-citrate PET, Western blot, immunofluorescence staining, Elisa kits, and transmission electron microscopy to detect the infarct volume, neural injuries, and ferroptosis-related indexes.
Results:
CSO treatment could significantly ameliorate MCAO-R-induced neurological dysfunction in a male rat model. Furthermore, it reduced infarct volume and neuronal injuries; protected BBB integrity; reduced the influx of iron ion, TF, and TF receptors; up-regulated anti-ferroptosis proteins (GPX4, xCT, HO1, FTH1), while down-regulating ferroptosis-related protein ACSL4; increased the activity of GSH and SOD; and decreased MDA and LPO levels. Mitochondrial destruction induced by ischemic stroke was also alleviated by CSO treatment.
Conclusion:
CSO treatment can alleviate ischemic stroke injury via ferroptosis inhibition, which provides a new potential therapeutic mechanism for CSO neuroprotection against ischemic stroke.
Insights
Cottonseed oil (CSO) alleviates ischemic stroke injury by inhibiting ferroptosis, a cell death pathway involving iron and lipid peroxidation. This neuroprotective effect offers a new therapeutic strategy for stroke treatment.
Area of Science:
- Neuroscience
- Biochemistry
- Cell Biology
Background:
- Ferroptosis, an iron-dependent cell death pathway, contributes to ischemia-reperfusion injury after stroke.
- Blood-brain barrier disruption allows iron influx, exacerbating ferroptosis.
- Cottonseed oil (CSO) is known to mitigate oxidative stress and stroke injury.
Purpose of the Study:
- To investigate the effect of CSO on ferroptosis induced by cerebral ischemic injury in a rat model.
- To explore CSO's potential as a neuroprotective agent against ischemic stroke via ferroptosis inhibition.
Main Methods:
- Rats with middle cerebral artery occlusion-reperfusion (MCAO-R) injury received subcutaneous CSO injections.
- Evaluated neurological function, infarct volume, neuronal damage, and blood-brain barrier integrity.
- Assessed ferroptosis markers, including iron/transferrin influx, lipid peroxidation, antioxidant levels, and mitochondrial morphology.
Main Results:
- CSO treatment significantly improved neurological function and reduced infarct volume and neuronal injury in MCAO-R rats.
- CSO protected blood-brain barrier integrity and decreased iron and transferrin influx.
- CSO upregulated anti-ferroptosis proteins (GPX4, xCT, HO1, FTH1), downregulated ACSL4, increased GSH and SOD activity, and decreased MDA and LPO levels, while alleviating mitochondrial damage.
Conclusions:
- CSO effectively alleviates ischemic stroke injury by inhibiting ferroptosis.
- CSO demonstrates neuroprotective properties against ischemic stroke through ferroptosis modulation.
- CSO represents a promising therapeutic candidate for managing ischemic stroke by targeting ferroptosis.
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