Mechanisms of Alcohol Withdrawal
Mechanisms of Alcohol Withdrawal
批准号:
7884179
负责人:
DWAYNE W GODWIN
金额:
$32.97万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-10 至 2013-06-30
关键词:
A MouseAction PotentialsAcuteAffectAgonistAlcohol Withdrawal SeizuresAlcohol abuseAlcohol consumptionAlcohol withdrawal syndromeAlcoholismAnimalsAntiepileptic AgentsAttenuatedBehavioralBiologyBrainCalciumCalcium ChannelCellsCentral Nervous System DiseasesCerebral cortexChronicClinicalComplexConfusionDataDevelopmentDiagnosisElectroencephalographyEthanolEventExposure toFrequenciesFunctional disorderGene ExpressionGene ProteinsGeneralized seizuresGenesGoalsHallucinationsHealthHeartHippocampus (Brain)HumanHyperactive behaviorIncidenceKindling (Neurology)KineticsKnock-outKnockout MiceLinkLiverLungMalignant NeoplasmsMediatingMethodsModelingMolecularMonitorMusNeuronsPatternPharmaceutical PreparationsProtein IsoformsProtocols documentationRegulationResistanceResolutionRoleSeizuresSelf AdministrationSeveritiesSleepStructureSymptomsSystemT-Type Calcium ChannelsTestingThalamic NucleiThalamic structureTimeTissuesTrainingTremorWild Type MouseWithdrawalalcohol exposureattenuationchannel blockerscohortexperienceknockout animalmouse modelnonhuman primateproblem drinkerprotein expressionpublic health relevanceresearch studyresponsetranscription factorvaporvoltage
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Alcohol abuse, in combination with multiple alcohol withdrawal events, produces a phenomenon similar to kindling in subcortical structures. Depending on the duration of alcohol consumption and the number of withdrawal events the clinical symptoms of alcohol withdrawal can range from mild to gross tremors, hyperactivity, confusion, hallucinations, sleep disruption and seizures. These symptoms can worsen with each withdrawal event and complicate diagnosis and treatment. Underlying withdrawal seizure is an abnormal brain rhythm that is produced in the thalamus by neurons firing rhythmic bursts of action potentials. These bursts depend upon a class of T-type calcium channels that are expressed within the brain and periphery. Despite the similarities between alcohol withdrawal seizures and other generalized seizures of thalamic origin, the influence of ethanol on thalamic function during alcohol withdrawal is unknown. This is particularly important to understand because abnormal thalamic rhythms precede the generalization of abnormal rhythms in both the hippocampus and the cerebral cortex. The overall goal of this proposal is to determine cellular and molecular mechanisms underlying alterations in thalamic T-type calcium channels in response to multiple withdrawal events and how these contribute to alcohol withdrawal seizure. A mouse model will be used to explore these mechanisms because it possesses all three of the T-type calcium channel isoforms, and is a well-developed model for multiple withdrawal seizures. In addition, it will allow us to integrate a knockout of a highly ethanol-sensitive T-type channel isoform in our studies. In Aim 1, we propose to record withdrawal seizures and, using spike train analyses we have developed, to characterize the specific contribution of T-type channel burst discharges to the development of seizure. In Aim 2, we will characterize the molecular mechanisms underlying the development of burst firing in subcortical structures, and we will relate the incidence of bursts to the gene and protein increases we have observed in our preliminary studies. In Aim 3, we will use high resolution whole cell patch recordings to determine whether the increases in gene and protein expression we have observed produce simple increases in calcium currents, or more complex alterations in basic channel kinetics. PUBLIC HEALTH RELEVANCE We will examine the influence of ethanol on an ethanol-sensitive calcium channel that underlies alcohol withdrawal seizure. In addition to the brain, this channel is involved in the basic biology and dysfunction of the heart, lung and liver, and is expressed in certain cancers, thus studies of the molecular regulation of this channel are highly significant to human health generally, and are specifically relevant to the understanding of alcohol withdrawal.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Evaluating Gene Therapy Strategies to Treat Epilepsy Using a Novel Optogenetic Measure of Network Excitability and Seizure Susceptibility
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批准号:10215636
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项目类别:
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资助金额:$23.15万
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财政年份:2020
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负责人:DWAYNE W GODWIN
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依托单位:
Evaluating Gene Therapy Strategies to Treat Epilepsy Using a Novel Optogenetic Measure of Network Excitability and Seizure Susceptibility
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批准号:10057595
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项目类别:
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资助金额:$20.21万
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财政年份:2020
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负责人:DWAYNE W GODWIN
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依托单位:
Mechanisms of Alcohol Withdrawal
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批准号:7527953
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项目类别:
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资助金额:$31.7万
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依托单位:
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批准号:7653859
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资助金额:$31.83万
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依托单位:
Mechanisms of Alcohol Withdrawal
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批准号:8100122
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资助金额:$31.69万
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Mechanisms of Alcohol Withdrawal
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批准号:8298949
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Mechanisms of Alcohol Withdrawal
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批准号:10661556
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资助金额:$42.98万
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Mechanisms of Alcohol Withdrawal
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批准号:8325476
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资助金额:$6.41万
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财政年份:2008
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依托单位:
Mechanisms of Alcohol Withdrawal
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批准号:10443839
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项目类别:
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资助金额:$42.98万
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依托单位:
Mechanisms of Alcohol Withdrawal
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批准号:9886770
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资助金额:$43.88万
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依托单位:
Ensemble Dynamics of Cortical Feedback to the Thalamus
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批准号:7996189
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项目类别:
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资助金额:$8.71万
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Mechanisms of Alcohol Withdrawal
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批准号:10263903
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Mechanisms of Alcohol Withdrawal
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Ensemble Dynamics of Cortical Feedback to the Thalamus
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依托单位:
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资助金额:$22.12万
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依托单位:
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财政年份:2004
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Cellular Mechanisms of Ethanol's Influence on Sleep
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批准号:6624255
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项目类别:
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资助金额:$14.4万
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财政年份:2002
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负责人:DWAYNE W GODWIN
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依托单位:
Cellular Mechanisms of Ethanol's Influence on Sleep
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财政年份:2002
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Brainstem Control of Subcortical Visual Information
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依托单位:
海外基金