Smith Kyle S, Berridge Kent C
Department of Psychology, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Neurosci. 2005 Sep 21;25(38):8637-49. doi: 10.1523/JNEUROSCI.1902-05.2005.
How are natural reward functions such as sucrose hedonic impact and the motivation to eat generated within the ventral pallidum (VP)? Here, we used a novel microinjection and functional mapping procedure to neuroanatomically localize and neurochemically characterize substrates in the VP that mediate increases in eating behavior and enhancements in taste hedonic "liking" reactions. The mu-opioid agonist D-Ala2-N-Me-Phe4-Glycol5-enkephalin (DAMGO) caused increased hedonic "liking" reactions to sucrose only in the posterior VP but conversely suppressed "liking" reactions in the anterior and central VP. DAMGO similarly stimulated eating behavior in the posterior and central VP and suppressed eating in the anterior VP. In contrast, the GABAA antagonist bicuculline increased eating behavior at all VP sites, yet completely failed to enhance sucrose "liking" reactions at any site. These results reveal that VP generation of increased food reward and increased eating behavior is related but dissociable. Hedonic "liking" and eating are systematically mapped in a neuroanatomically and neurochemically interactive manner in the VP.
诸如蔗糖享乐影响和进食动机等自然奖赏功能是如何在腹侧苍白球(VP)内产生的?在这里,我们使用了一种新颖的微注射和功能映射程序,从神经解剖学角度定位并从神经化学角度表征VP中介导进食行为增加和味觉享乐“喜好”反应增强的底物。μ-阿片受体激动剂D-Ala2-N-Me-Phe4-Glycol5-脑啡肽(DAMGO)仅在后侧VP中引起对蔗糖享乐“喜好”反应增加,但在相反情况下,在前侧和中央VP中抑制“喜好”反应。DAMGO同样刺激后侧和中央VP中的进食行为,并抑制前侧VP中的进食。相比之下,GABAA拮抗剂荷包牡丹碱在所有VP位点均增加进食行为,但在任何位点均完全未能增强蔗糖“喜好”反应。这些结果表明,VP中食物奖赏增加和进食行为增加的产生是相关但可分离的。享乐“喜好”和进食在VP中以神经解剖学和神经化学相互作用的方式进行系统映射。