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Electroconvulsive Seizures in Rats and Fractionation of Their Hippocampi to Examine Seizure-induced Changes in Postsynaptic Density Proteins
Published on: August 15, 2017
Rapamycin has age-, treatment paradigm-, and model-specific anticonvulsant effects and modulates neuropeptide Y
Tamar Chachua1, Ka-Lai Poon, Mi-Sun Yum
1Department of Cell Biology & Anatomy, New York Medical College, 40 Sunshine Cottage Rd, Valhalla, NY 10595, U.S.A. tamar_chachua@nymc.edu
Purpose:
Rapamycin (RAP) has certain antiepileptogenic features. However, it is unclear whether these effects can be explained by the anticonvulsant action of RAP, which has not been studied. To address this question, we tested potential anticonvulsant effects of RAP in immature and adult rats using different seizure models and treatment paradigms. In addition, we studied changes in the expression of neuropeptide Y (NPY) induced by RAP, which may serve as an indirect target of the RAP action.
Methods:
A complex approach was adopted to evaluate the anticonvulsant potential of RAP: We used flurothyl-, pentylenetetrazole (PTZ)-, N-methyl-D-aspartate (NMDA)-, and kainic acid (KA)-induced seizures to test the effects of RAP using different pretreatment protocols in immature and adult rats. We also evaluated expression of NPY within the primary motor cortex, hippocampal CA1, and dentate gyrus (DG) after different pretreatments with RAP in immature rats.
Key Findings:
We found the following: (1) RAP administered with short-term pretreatment paradigms has a weak anticonvulsant potential in the seizure models with compromised inhibition. (2) Lack of RAP efficacy correlates with decreased NPY expression in the cortex, CA1, and DG. Specifically in immature rats, a single dose of RAP (3 mg/kg) 4 or 24 h before seizure testing had anticonvulsant effects against PTZ-induced seizures. In the flurothyl seizure model only the 4-h pretreatment with RAP was anticonvulsant in the both age groups. Short-term pretreatments with RAP had no effects against NMDA- and KA-induced seizures tested in immature rats. Long-term pretreatments with RAP over 8 days did not show beneficial effect in all tested seizure models in developing rats. Moreover, the long-term pretreatment with RAP had a slight proconvulsant effect on KA-induced seizures. In immature rats, any lack of anticonvulsant effect (including proconvulsant effect of multiple doses of RAP) was associated with downregulation of NPY expression in the cortex and DG. In immature animals, after a single dose of RAP with 24 h delay, we found a decrease of NPY expression in DG, and CA1 as well.
Significance:
Our data show weak age-, treatment paradigm-, and model-specific anticonvulsant effects of RAP as well as loss of those effects after long-term RAP pretreatment associated with downregulation of NPY expression. These findings suggest that RAP is a poor anticonvulsant and may have beneficial effects only against epileptogenesis. In addition, our data present new insights into mechanisms of RAP action on seizures indicating a possible connection between mammalian target of rapamycin (mTOR) signaling and NPY system.
Insights
Rapamycin (RAP) shows weak anticonvulsant effects in rats, particularly with long-term use. Its efficacy against seizures is linked to neuropeptide Y (NPY) expression, suggesting limited anticonvulsant potential but possible benefits against epileptogenesis.
Area of Science:
- Neuroscience
- Pharmacology
- Epilepsy Research
Background:
- Rapamycin (RAP) is known for antiepileptogenic properties.
- The anticonvulsant effects of RAP have not been thoroughly investigated.
- Neuropeptide Y (NPY) is a potential mediator of RAP's action on seizures.
Purpose of the Study:
- To evaluate the anticonvulsant effects of Rapamycin (RAP) in immature and adult rats.
- To investigate the relationship between RAP treatment, seizure models, and Neuropeptide Y (NPY) expression.
- To determine if RAP's antiepileptogenic effects are due to anticonvulsant activity.
Main Methods:
- Utilized various seizure models: flurothyl, pentylenetetrazole (PTZ), N-methyl-D-aspartate (NMDA), and kainic acid (KA).
- Administered RAP using different pretreatment protocols in immature and adult rats.
- Assessed NPY expression in the motor cortex, hippocampus (CA1), and dentate gyrus (DG) following RAP treatment.
Main Results:
- RAP demonstrated weak, model-specific anticonvulsant potential, particularly against PTZ-induced seizures with short-term pretreatment.
- Long-term RAP pretreatment showed no beneficial effects and even a proconvulsant effect in some models.
- Lack of anticonvulsant effect correlated with decreased NPY expression in the cortex and DG, especially in immature rats.
Conclusions:
- Rapamycin exhibits limited, age- and model-specific anticonvulsant effects, diminishing with long-term pretreatment.
- The findings suggest RAP is a poor anticonvulsant but may retain beneficial effects against epileptogenesis.
- Data indicate a potential link between mammalian target of rapamycin (mTOR) signaling, NPY system, and seizure activity.

