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Published on: June 12, 2018
Rapamycin Cannot Reduce Seizure Susceptibility in Infantile Rats with Malformations of Cortical Development Lacking
Minyoung Lee1,2, Eun-Jin Kim1,2, Min-Jee Kim3
1Department of Pediatrics, University of Ulsan College of Medicine, Seoul, 05505, Korea.
Abstract:
The mechanistic target of the rapamycin (mTOR) pathway is involved in cortical development. However, the efficacy of mTOR inhibitors in malformations of cortical dysplasia (MCD) outside of the tuberous sclerosis complex is unknown. We selected the MCD rat model with prenatal MAM exposure to test the efficacy of mTOR inhibitors in MCDs. We explored the early cortical changes of mTOR pathway protein expression in rats aged P15. We also monitored the early treatment effect of the mTOR inhibitor, rapamycin, on N-methyl-D-aspartate (NMDA)-induced spasms at P15 and their behavior in the juvenile stage. In vivo MR spectroscopy was performed after rapamycin treatment and compared with vehicle controls. There was no difference in mTORC1 pathway protein expression between MAM-exposed MCD rats and controls at P15, and prolonged treatment of rapamycin had no impact on NMDA-induced spasms despite poor weight gain. Prenatal MAM-exposed juvenile rats treated with rapamycin showed increased social approaching and freezing behavior during habituation. MR spectroscopy showed altered neurometabolites, including Gln, Glu+Gln, Tau, and Cr. Despite behavioral changes and in vivo neurometabolic alteration with early prolonged rapamycin treatment, rapamycin had no effect on spasms susceptibility in prenatal MAM-exposed infantile rats with MCD without mTORC1 activation. For MAM-exposed MCD rats without mTORC1 activation, treatment options outside of mTOR pathway inhibitors should be explored.
Insights
Rapamycin did not improve seizures in a rat model of malformations of cortical development (MCD) without mTORC1 activation. Alternative treatments are needed for these MCD cases.
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- The mechanistic target of rapamycin (mTOR) pathway regulates cortical development.
- The efficacy of mTOR inhibitors in malformations of cortical dysplasia (MCD) beyond tuberous sclerosis complex is not well understood.
Purpose of the Study:
- To investigate the efficacy of mTOR inhibitors in a rat model of MCD induced by prenatal exposure to methylazoxymethanol (MAM).
- To examine the effects of rapamycin on NMDA-induced spasms, behavior, and neurometabolites in MAM-exposed rats.
Main Methods:
- Utilized a rat model of MCD induced by prenatal MAM exposure.
- Administered the mTOR inhibitor rapamycin and assessed mTORC1 pathway protein expression.
- Monitored NMDA-induced spasms, juvenile behavior, and performed in vivo MR spectroscopy.
Main Results:
- No difference in mTORC1 pathway protein expression was observed between MAM-exposed rats and controls at P15.
- Rapamycin treatment did not impact NMDA-induced spasms, despite causing weight gain.
- Rapamycin treatment altered social behavior and freezing during habituation, and modified specific neurometabolites (Gln, Glu+Gln, Tau, Cr).
Conclusions:
- Early, prolonged rapamycin treatment did not affect spasm susceptibility in MAM-exposed MCD rats lacking mTORC1 activation.
- Treatment strategies targeting pathways other than mTOR should be considered for MAM-exposed MCD rats without mTORC1 activation.
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