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Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
miR-212-5p attenuates ferroptotic neuronal death after traumatic brain injury by targeting Ptgs2
Xiao Xiao1, Youjing Jiang1, Weibo Liang1
1Department of Forensic Genetics, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, 610041, Sichuan, People's Republic of China.
Abstract:
Ferroptosis, a newly discovered form of iron-dependent regulated cell death, has been implicated in traumatic brain injury (TBI). MiR-212-5p has previously been reported to be downregulated in extracellular vesicles following TBI. To investigate whether miR-212-5p is involved in the ferroptotic neuronal death in TBI mice, we first examined the accumulation of malondialdehyde (MDA) and ferrous ion, and the expression of ferroptosis-related molecules at 6 h, 12 h, 24 h, 48 h and 72 h following controlled cortical impact (CCI) in mice. There was a significant upregulation in the expression of Gpx4 and Acsl4 at 6 h, Slc7a11 from 12 h to 72 h, and Nox2 and Sat1 from 6 h to 72 h post injury. Similarly, an upregulation in the expression of Gpx4 at 6 h, Nox2 from 6 h to 72 h, xCT from 12 h to 72 h, and Sat1 at 72 h after CCI was observed at the protein level. Interestingly, MDA and ferrous ion were increased whereas miR-212-5p was decreased in the CCI group compared to the sham group. Furthermore, we found that overexpression of miR-212-5p attenuated ferroptosis while downregulation of miR-212-5p promoted ferroptotic cell death partially by targeting prostaglandin-endoperoxide synthase-2 (Ptgs2) in HT-22 and Neuro-2a cell lines. In addition, administration of miR-212-5p in CCI mice significantly improved learning and spatial memory. Collectively, these findings indicate that miR-212-5p may protect against ferroptotic neuronal death in CCI mice partially by targeting Ptgs2.
Insights
MicroRNA-212-5p protects against ferroptosis, a type of cell death, in traumatic brain injury (TBI). Restoring miR-212-5p levels improved memory and learning in TBI mice.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Ferroptosis, an iron-dependent regulated cell death, is implicated in traumatic brain injury (TBI).
- MicroRNA-212-5p (miR-212-5p) is downregulated in extracellular vesicles after TBI.
Purpose of the Study:
- To investigate the role of miR-212-5p in ferroptotic neuronal death following TBI.
- To determine if miR-212-5p can be a therapeutic target for TBI.
Main Methods:
- Examined ferroptosis markers (MDA, ferrous ion, Gpx4, Acsl4, Slc7a11, Nox2, Sat1, Ptgs2) in TBI mouse models and cell lines.
- Assessed the effect of miR-212-5p overexpression and downregulation on ferroptosis in vitro.
- Evaluated the impact of miR-212-5p administration on cognitive function in TBI mice.
Main Results:
- TBI induced ferroptosis, evidenced by increased MDA and ferrous ion, and altered expression of ferroptosis-related genes and proteins.
- miR-212-5p levels were decreased in TBI mice.
- Overexpression of miR-212-5p attenuated ferroptosis, while its downregulation promoted it, partly by targeting Ptgs2.
- miR-212-5p administration improved learning and spatial memory in TBI mice.
Conclusions:
- miR-212-5p plays a protective role against ferroptotic neuronal death in TBI.
- Targeting Ptgs2 is one mechanism by which miR-212-5p exerts its neuroprotective effects.
- miR-212-5p represents a potential therapeutic strategy for mitigating TBI-induced neuronal damage and cognitive deficits.