挫折性非奖赏消耗性连续负对比后杏仁核中详细的 c-Fos 表达模式

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
David Arjol , Antonio D.R. Agüera , Christopher Hagen , Mauricio R. Papini
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引用次数: 0

摘要

杏仁核与意外奖赏下移所诱发的受挫非奖赏有牵连,使用的范式包括消耗性连续负对比(cSNC)。然而,现有的证据来自于涉及中央和基底核的广泛实验。此外,杏仁核参与奖赏下移是否需要cSNC效应(即下移动物的抑制作用大于未下移的对照组),或者仅仅是消耗性抑制而不需要cSNC效应,目前仍不清楚。三组动物分别暴露于(1)导致 cSNC 效应的较大奖励差异(32%-2% 的蔗糖);(2)在没有 cSNC 效应的情况下涉及消耗性抑制的较小奖励差异(8%-2% 的蔗糖);(3)未移位对照组(2% 的蔗糖)。大鼠杏仁核基底外侧、中央和内侧的十个区域的前部、内侧和后部(A/P 轴)的 c-Fos 阳性细胞被计数。在四个区域中,32%-2%蔗糖下移动物的c-Fos表达高于其他两组:基底杏仁核前部和内侧外侧、杏仁核中央内侧囊和杏仁核前部-内侧外侧。在 8% 至 2% 的蔗糖下移和未下移条件下,没有一个区域显示出不同的 c-Fos 表达。因此,杏仁核的激活需要暴露于巨大的奖赏差异中。这种方法首次发现了与了解 cSNC 效应相关的特定杏仁核区域,建议进行后续实验以测试这些区域在奖赏下移中的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frustrative nonreward: Detailed c-Fos expression patterns in the amygdala after consummatory successive negative contrast

The amygdala has been implicated in frustrative nonreward induced by unexpected reward downshifts, using paradigms like consummatory successive negative contrast (cSNC). However, existing evidence comes from experiments involving the central and basolateral nuclei on a broad level. Moreover, whether the amygdala’s involvement in reward downshift requires a cSNC effect (i.e., greater suppression in downshifted animals than in unshifted controls) or just consummatory suppression without a cSNC effect, remains unclear. Three groups were exposed to (1) a large reward disparity leading to a cSNC effect (32-to-2% sucrose), (2) a small reward disparity involving consummatory suppression in the absence of a cSNC effect (8-to-2% sucrose), and (3) an unshifted control (2% sucrose). Brains obtained after the first reward downshift session were processed for c-Fos expression, a protein often used as a marker for neural activation. c-Fos-positive cells were counted in the anterior, medial, and posterior portions (A/P axis) of ten regions of the rat basolateral, central, and medial amygdala. c-Fos expression was higher in 32-to-2% sucrose downshift animals than in the other two groups in four regions: the anterior and the medial lateral basal amygdala, the medial capsular central amygdala, and the anterior anterio-ventral medial amygdala. None of the areas exhibited differential c-Fos expression between the 8-to-2% sucrose downshift and the unshifted conditions. Thus, amygdala activation requires exposure to a substantial reward disparity. This approach has identified, for the first time, specific amygdala areas relevant to understand the cSNC effect, suggesting follow-up experiments aimed at testing the function of these regions in reward downshift.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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