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Mechanisms of Alcohol Hangover Headache

Mechanisms of Alcohol Hangover Headache
酒精宿醉头痛的机制
批准号:
8243155
负责人:
DAN LEVY
金额:
$25.01万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-02-10 至 2014-01-31

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中文摘要
翻译
描述(由申请人提供):急性过量饮用酒精饮料会在一段时间后导致被称为“宿醉”的中毒后时期,其中包括抽动性头痛以及许多其他不愉快的身体症状。宿醉会产生许多社会经济后果,包括降低生产力和增加事故风险。宿醉头痛倾向与未来发展为酒精使用障碍的风险增加有关。宿醉头痛如何在酒精使用障碍以及其他酒精相关问题的病因学中发挥作用仍然是一个悬而未决的问题,主要是因为介导宿醉症状(包括头痛)的因素和神经机制尚不清楚。这种知识的缺乏部分归因于临床研究的缺乏,以及几乎完全缺乏对该现象背后的生理和神经生理过程的基础研究。我们之前已经建立了一个独特的动物模型来研究脑膜伤害感受器的活性和机械敏感性,这是与头痛发生最直接相关的外周神经元群。我们现在建议使用这种动物模型首次研究在介导宿醉头痛中起作用的因素,宿醉头痛是宿醉状态最常见的症状之一。使用麻醉大鼠脑膜伤害感受器的体内单单位记录,我们建议通过解决酒精相关物质的身份以及可能导致宿醉头痛的神经过程来开始这条调查线。具体目的1将检查急性乙醇给药对脑膜伤害感受器活性和机械敏感性的时间过程和剂量相关影响。特异性目标2将确定乙醇的第一代谢物乙醛在介导脑膜伤害感受器激活和致敏管理中毒剂量的乙醇后的相对贡献。具体目标3将检查甲醇(酒精饮料中发现的主要毒性同系物之一)或其代谢物甲酸和甲酸是否会增加脑膜伤害感受器的活性和机械敏感性,并进一步确定甲醇是否可以增强或延长与急性乙醇中毒相关的脑膜伤害感受器的激活和致敏。这些实验是研究头痛这一主要宿醉症状背后的神经生物学机制的第一步。这个探索性项目的数据将开始填补我们关于可能导致宿醉头痛的因素和过程的知识空白,并提供急需的数据,以产生关于头痛和潜在的其他宿醉症状起源的进一步可测试的假设。数据将有助于未来的研究,以解决对宿醉的敏感程度如何与酗酒倾向和潜在的其他宿醉相关健康问题的差异相关的问题。
英文摘要
DESCRIPTION (provided by applicant): Acute excessive consumption of alcoholic beverages leads, after a delay, to a post-intoxication period known as the "hangover", which consists of throbbing headache as well as numerous other unpleasant physical symptoms. Hangover has many socioeconomic consequences, including reduced productivity and increased accident risk. Hangover headache proneness has been associated with increased risk for future development of alcohol use disorders. How hangover headache plays a role in the etiology of alcohol use disorders as well as other alcohol-related problems remains an open question, largely because the factors and neuronal mechanisms that mediate the hangover symptoms, including the headache are poorly understood. This lack of knowledge can be attributed, in part to the paucity of clinical studies and the almost complete lack of basic research on the physiological and neurophysiological processes underlying the phenomenon. We have previously established a unique animal model for studying the activity and mechanosensitivity of meningeal nociceptors, the peripheral neuronal population that has been most directly implicated in the genesis of headache. We now propose to use this animal model to investigate for the first time the factors that play a role in mediating the hangover headache, one of the most common symptoms of the hangover state. Using in vivo single unit recordings of meningeal nociceptors in anesthetized rats, we propose to start this line of investigation by addressing the identity of the alcohol-related substances as well as the neural processes that might potentially contribute to the hangover headache. Specific aim 1 will examine time-course and dose- related effects of acute ethanol administration on the activity and mechanosensitivity of meningeal nociceptors. Specific Aim 2 will determine the relative contribution of ethanol's first metabolite acetaldehyde in mediating meningeal nociceptor activation and sensitization following administration of intoxicating doses of ethanol. Specific Aim 3 will examine whether methanol, one of the major toxic congeners found in alcoholic beverages or its metabolites formate and formic acid increase the activity and mechanosensitivity of meningeal nociceptors and further determine whether methanol can enhance or prolong the activation and sensitization of meningeal nociceptors associated with acute ethanol intoxication. These experiments are the first methodological step in the study of the neurobiological mechanisms underlying a major hangover symptom, the headache. Data from this exploratory project will begin to fill the gaps in our knowledge regarding the factors and processes the may contribute to the hangover headache and provide much needed data to generate further testable hypotheses on the origin of the headache and potentially other hangover symptoms. Data will be instrumental in future studies that address the question of how the degree of sensitivity to hangover is related to differences in the propensity of developing alcoholism and potentially other hangover- related health problems. PUBLIC HEALTH RELEVANCE: Increased hangover frequency and susceptibility are associated with increased risk for future development of alcohol use disorders as well as other alcohol related health problems. How the degree of sensitivity to hangover is related to differences in the propensity of developing alcoholism is unknown, in part because of the poor understanding of the mechanisms underlying the hangover state. This project will begin to explore, using an animal model, the mechanisms underlying the hangover headache, one of the most common and disabling symptoms of the hangover.
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