Treatment with the antiepileptic drugs phenytoin and gabapentin ameliorates seizure and paralysis of Drosophila bang-sensitive mutants.
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Calcium Imaging of Neuronal Activity in Drosophila Can Identify Anticonvulsive CompoundsMutations of the Calcium Channel Gene cacophony Suppress Seizures in DrosophilaA Drosophila systems model of pentylenetetrazole induced locomotor plasticity responsive to antiepileptic drugs.Increased persistent Na+ current contributes to seizure in the slamdance bang-sensitive Drosophila mutant.Activity-dependent regulation of astrocyte GAT levels during synaptogenesis.Effects of oxygen concentration and pressure on Drosophila melanogaster: oxidative stress, mitochondrial activity, and survivorship.Structural mass spectrometry analysis of lipid changes in a Drosophila epilepsy model brain.Fighting anthrax with fliesSeizure suppression by gain-of-function escargot mutations.Human disease models in Drosophila melanogaster and the role of the fly in therapeutic drug discovery.Regulation of membrane excitability: a convergence on voltage-gated sodium conductance.A new model to study sleep deprivation-induced seizure.A novel Drosophila SOD2 mutant demonstrates a role for mitochondrial ROS in neurodevelopment and diseaseNeuropathology in Drosophila mutants with increased seizure susceptibility.From bench to drug: human seizure modeling using DrosophilaEmerging epilepsy models: insights from mice, flies, worms and fish.Drosophila melanogaster as a model organism of brain diseasesFUS-linked essential tremor associated with motor dysfunction in Drosophila.Seizure and epilepsy: studies of seizure disorders in Drosophila.Invertebrate and fungal model organisms: emerging platforms for drug discovery.Fruit flies as a powerful model to drive or validate pain genomics efforts.Seizure suppression through manipulating splicing of a voltage-gated sodium channelRogdi Defines GABAergic Control of a Wake-promoting Dopaminergic Pathway to Sustain Sleep in Drosophila.Metabolic disruption in Drosophila bang-sensitive seizure mutants.DNA topoisomerase I inhibitors ameliorate seizure-like behaviors and paralysis in a Drosophila model of epilepsy.Overexpression of human MRP1 in neurons causes resistance to antiepileptic drugs in Drosophila seizure mutants.Seizure suppression by shakB2, a gap junction mutation in Drosophila.A Circadian Clock in the Blood-Brain Barrier Regulates Xenobiotic Efflux.Inhibition of mitochondrial respiration under hypoxia and increased antioxidant activity after reoxygenation of Tribolium castaneum.
P2860
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P2860
Treatment with the antiepileptic drugs phenytoin and gabapentin ameliorates seizure and paralysis of Drosophila bang-sensitive mutants.
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年学术文章
@wuu
2004年学术文章
@zh
2004年学术文章
@zh-cn
2004年学术文章
@zh-hans
2004年学术文章
@zh-my
2004年学术文章
@zh-sg
2004年學術文章
@yue
2004年學術文章
@zh-hant
name
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@en
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@nl
type
label
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@en
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@nl
prefLabel
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@en
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@nl
P2093
P356
P1476
Treatment with the antiepilept ...... ophila bang-sensitive mutants.
@en
P2093
Benjamin Jacobs
Carol McKeever
Elaine R Reynolds
Elizabeth Rojahn
Eric A Stauffer
Laura Feeney
P304
P356
10.1002/NEU.10297
P577
2004-03-01T00:00:00Z