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Cerebellar output controls generalized spike-and-wave discharge occurrence
- Source :
- Annals of Neurology, Annals of Neurology, 77(6), 1027-1049, Annals of Neurology, 77(6), 1027-49. John Wiley and Sons Inc., Annals of Neurology, 77(6), 1027-1049. John Wiley & Sons Inc., Annals of Neurology, 77 (6), 2015
- Publication Year :
- 2015
-
Abstract
- OBJECTIVE: Disrupting thalamocortical activity patterns has proven to be a promising approach to stop generalized spike-and-wave discharges (GSWDs) characteristic of absence seizures. Here, we investigated to what extent modulation of neuronal firing in cerebellar nuclei (CN), which are anatomically in an advantageous position to disrupt cortical oscillations through their innervation of a wide variety of thalamic nuclei, is effective in controlling absence seizures. METHODS: Two unrelated mouse models of generalized absence seizures were used: the natural mutant tottering, which is characterized by a missense mutation in Cacna1a, and inbred C3H/HeOuJ. While simultaneously recording single CN neuron activity and electrocorticogram in awake animals, we investigated to what extent pharmacologically increased or decreased CN neuron activity could modulate GSWD occurrence as well as short-lasting, on-demand CN stimulation could disrupt epileptic seizures. RESULTS: We found that a subset of CN neurons show phase-locked oscillatory firing during GSWDs and that manipulating this activity modulates GSWD occurrence. Inhibiting CN neuron action potential firing by local application of the γ-aminobutyric acid type A (GABA-A) agonist muscimol increased GSWD occurrence up to 37-fold, whereas increasing the frequency and regularity of CN neuron firing with the use of GABA-A antagonist gabazine decimated its occurrence. A single short-lasting (30-300 milliseconds) optogenetic stimulation of CN neuron activity abruptly stopped GSWDs, even when applied unilaterally. Using a closed-loop system, GSWDs were detected and stopped within 500 milliseconds. INTERPRETATION: CN neurons are potent modulators of pathological oscillations in thalamocortical network activity during absence seizures, and their potential therapeutic benefit for controlling other types of generalized epilepsies should be evaluated. Ann Neurol 2015;77:1027-1049.
- Subjects :
- Male
Action potential
Thalamus
Action Potentials
Mice, Transgenic
Optogenetics
GABA Antagonists
Mice
chemistry.chemical_compound
Epilepsy
Calcium Channels, N-Type
medicine
Animals
GABA-A Receptor Agonists
Research Articles
Neurons
Mice, Inbred C3H
Spike-and-wave
medicine.disease
Disease Models, Animal
medicine.anatomical_structure
Cerebellar Nuclei
Epilepsy, Absence
Neurology
Muscimol
chemistry
nervous system
Gabazine
Female
Neurology (clinical)
Neuron
Neuroscience
Research Article
medicine.drug
Subjects
Details
- Language :
- English
- ISSN :
- 03645134
- Volume :
- 77
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- Annals of Neurology
- Accession number :
- edsair.doi.dedup.....4980928645fb5cb52bd08e04cd0ef554
- Full Text :
- https://doi.org/10.1002/ana.24399