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Effects of Muscimol in the Nucleus Accumbens Shell on Salt Appetite and Sucrose Intake: A Microstructural Study With a Comment on the Sensitization of Salt Intake

机译:伏隔核壳中的麝香酚对食盐和蔗糖摄入的影响:微观结构研究,并评论了食盐的敏化作用

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Previous work has demonstrated that injections of the γ-aminobutyric acidA (GABAA) agonist muscimol into the nucleus accumbens shell (AcbSh) induce pronounced increases in the intake of solid foods and sucrose solutions, but do not potentiate water intake. In order to clarify the range of situations in which inactivation of the AcbSh potentiates ingestive behavior, we examined the effects of muscimol injections on the intake of a 3% NaC1 solution in sodium-depleted animals. Although sodium-depleted subjects avidly consumed this solution, muscimol injections had no effect either on the volume consumed or on a variety of microstructural licking parameters. In contrast, in these same animals, muscimol injections significantly increased licking of a 10% sucrose solution. These results suggest that inactivation of the AcbSh may selectively increase the intake of foods, but not that of other homeostatically relevant ingestates. Examination of microstructural parameters suggested that the effect of muscimol on sucrose intake was not mediated by alterations in the "palatability" of the sucrose solution. We also observed that sodium-depleted subjects displayed significantly larger salt intakes after their second experience with sodium depletion than their first, and microstructural analysis in this case indicated that this sensitization effect was produced in a manner consistent with the animals showing increased "hedonic responsiveness" to the salt solution.
机译:先前的工作表明,向伏隔核壳(AcbSh)中注射γ-氨基丁酸A(GABAA)激动剂麝香酚会导致固体食物和蔗糖溶液的摄入量显着增加,但不会增加水的摄入量。为了阐明灭活AcbSh增强食性的情况的范围,我们检查了麝香酚注射液对钠缺乏动物中3%NaCl溶液摄入量的影响。尽管贫钠的受试者狂热地消耗了这种溶液,但是麝香酚注射液对消耗的体积或各种微结构舔食参数都没有影响。相反,在这些相同的动物中,muscimol注射显着增加了10%蔗糖溶液的舔食。这些结果表明,AcbSh的失活可以有选择地增加食物的摄入量,而其他与体内稳态有关的摄入量则不能。微观结构参数的检验表明,麝香酚对蔗糖摄入的影响不是由蔗糖溶液的“适口性”的改变所介导的。我们还观察到,钠缺乏的受试者在第二次经历钠缺乏之后,其盐摄入量显着大于第一次经历,这种情况下的微观结构分析表明,这种敏化作用的产生方式与动物表现出的“享乐反应性增强”相一致。盐溶液。

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