» Articles » PMID: 25234294

Blockade of Excitatory Synaptogenesis with Proximal Dendrites of Dentate Granule Cells Following Rapamycin Treatment in a Mouse Model of Temporal Lobe Epilepsy

Overview
Journal J Comp Neurol
Specialty Neurology
Date 2014 Sep 20
PMID 25234294
Citations 17
Authors
Affiliations
Soon will be listed here.
Abstract

Inhibiting the mammalian target of rapamycin (mTOR) signaling pathway with rapamycin blocks granule cell axon (mossy fiber) sprouting after epileptogenic injuries, including pilocarpine-induced status epilepticus. However, it remains unclear whether axons from other types of neurons sprout into the inner molecular layer and synapse with granule cell dendrites despite rapamycin treatment. If so, other aberrant positive-feedback networks might develop. To test this possibility stereological electron microscopy was used to estimate the numbers of excitatory synapses in the inner molecular layer per hippocampus in pilocarpine-treated control mice, in mice 5 days after pilocarpine-induced status epilepticus, and after status epilepticus and daily treatment beginning 24 hours later with rapamycin or vehicle for 2 months. The optical fractionator method was used to estimate numbers of granule cells in Nissl-stained sections so that numbers of excitatory synapses in the inner molecular layer per granule cell could be calculated. Control mice had an average of 2,280 asymmetric synapses in the inner molecular layer per granule cell, which was reduced to 63% of controls 5 days after status epilepticus, recovered to 93% of controls in vehicle-treated mice 2 months after status epilepticus, but remained at only 63% of controls in rapamycin-treated mice. These findings reveal that rapamycin prevented excitatory axons from synapsing with proximal dendrites of granule cells and raise questions about the recurrent excitation hypothesis of temporal lobe epilepsy.

Citing Articles

Emerging Molecular Targets for Anti-Epileptogenic and Epilepsy Modifying Drugs.

Lukasiuk K, Lason W Int J Mol Sci. 2023; 24(3).

PMID: 36769250 PMC: 9917847. DOI: 10.3390/ijms24032928.


Impact of Raptor and Rictor Deletion on Hippocampal Pathology Following Status Epilepticus.

Godale C, Parkins E, Gross C, Danzer S J Mol Neurosci. 2022; 72(6):1243-1258.

PMID: 35618880 PMC: 9571976. DOI: 10.1007/s12031-022-02030-w.


Genetic Inhibition of Plppr5 Aggravates Hypoxic-Ischemie-Induced Cortical Damage and Excitotoxic Phenotype.

Sun Y, Jin M, Li L, Liu Y, Wang D, Ni H Front Neurosci. 2022; 16:751489.

PMID: 35401091 PMC: 8987356. DOI: 10.3389/fnins.2022.751489.


Astrocyte Role in Temporal Lobe Epilepsy and Development of Mossy Fiber Sprouting.

Twible C, Abdo R, Zhang Q Front Cell Neurosci. 2021; 15:725693.

PMID: 34658792 PMC: 8514632. DOI: 10.3389/fncel.2021.725693.


Hippocampal granule cell dispersion: a non-specific finding in pediatric patients with no history of seizures.

Roy A, Millen K, Kapur R Acta Neuropathol Commun. 2020; 8(1):54.

PMID: 32317027 PMC: 7171777. DOI: 10.1186/s40478-020-00928-3.


References
1.
Takei N, Inamura N, Kawamura M, Namba H, Hara K, Yonezawa K . Brain-derived neurotrophic factor induces mammalian target of rapamycin-dependent local activation of translation machinery and protein synthesis in neuronal dendrites. J Neurosci. 2004; 24(44):9760-9. PMC: 6730227. DOI: 10.1523/JNEUROSCI.1427-04.2004. View

2.
Nissinen J, Lukasiuk K, Pitkanen A . Is mossy fiber sprouting present at the time of the first spontaneous seizures in rat experimental temporal lobe epilepsy?. Hippocampus. 2002; 11(3):299-310. DOI: 10.1002/hipo.1044. View

3.
Houser C . Granule cell dispersion in the dentate gyrus of humans with temporal lobe epilepsy. Brain Res. 1990; 535(2):195-204. DOI: 10.1016/0006-8993(90)91601-c. View

4.
do Nascimento A, Dos Santos N, Campos Pelagio F, Teixeira S, de Moraes Ferrari E, Langone F . Neuronal degeneration and gliosis time-course in the mouse hippocampal formation after pilocarpine-induced status epilepticus. Brain Res. 2012; 1470:98-110. DOI: 10.1016/j.brainres.2012.06.008. View

5.
Suzuki F, Makiura Y, Guilhem D, Sorensen J, Onteniente B . Correlated axonal sprouting and dendritic spine formation during kainate-induced neuronal morphogenesis in the dentate gyrus of adult mice. Exp Neurol. 1997; 145(1):203-13. DOI: 10.1006/exnr.1997.6469. View