Ethanol.

Steven L McIntire
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Abstract

Ethanol is a widely used drug whose mechanism of action, despite intensive study, remains uncertain. Biochemical and electrophysiological experiments have identified receptors and ion channels whose functions are altered at physiological concentrations of ethanol. Yet, the contribution of these potential targets to its intoxicating or behavioral effects is unclear. Unbiased forward genetic screens for resistant or hypersensitive mutants represent an attractive means of identifying the relevant molecular targets or biochemical pathways mediating the behavioral effects of neuroactive compounds. C. elegans has proven to be a particularly useful system for such studies. The behavioral effects of ethanol occur at equivalent tissue concentrations in mammals and in C. elegans, suggesting the existence of conserved drug targets in the nervous system. This chapter reviews the results of studies directed toward determining the mechanisms of action of ethanol. Studies of the neural adaptations that occur with prolonged drug exposure are also discussed. The methods used to characterize the actions of ethanol should be applicable to the characterizations of other compounds that affect the behavior of C. elegans.

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乙醇。
乙醇是一种广泛使用的药物,其作用机制尽管经过深入研究,但仍不确定。生物化学和电生理实验已经确定了受体和离子通道,其功能在生理浓度的乙醇下发生改变。然而,这些潜在的目标对其中毒或行为影响的贡献尚不清楚。对耐药或超敏突变体进行无偏正向遗传筛选是识别相关分子靶点或介导神经活性化合物行为影响的生化途径的一种有吸引力的手段。秀丽隐杆线虫已被证明是这类研究的一个特别有用的系统。在哺乳动物和秀丽隐杆线虫中,当组织浓度相等时,乙醇的行为效应也会发生,这表明在神经系统中存在保守的药物靶点。本章综述了针对确定乙醇作用机制的研究结果。神经适应的研究,发生与长期的药物暴露也进行了讨论。用于表征乙醇作用的方法应该适用于表征影响秀丽隐杆线虫行为的其他化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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