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外侧下丘脑的谷氨酸能投射投射到大鼠外侧缰核中投射到 VTA 的神经元。

A glutamatergic projection from the lateral hypothalamus targets VTA-projecting neurons in the lateral habenula of the rat.

机构信息

Institut für Integrative Neuroanatomie, Charité-Universitätsmedizin Berlin, Philippstrasse 12, D-10115 Berlin, Germany.

出版信息

Brain Res. 2013 Apr 24;1507:45-60. doi: 10.1016/j.brainres.2013.01.029. Epub 2013 Jan 21.

Abstract

Homeostasis describes the fundamental biological ability of individuals to maintain stable internal conditions in a changing environment. Homeostatic reactions include internal adjustments as well as behavioral responses. In vertebrates, behavioral responses are induced by the reward system. This system originates in the ventral tegmental area (VTA) and leads to increased dopamine levels in the forebrain whenever activated. A major inhibitor of VTA activity is the lateral habenula (LHb). This epithalamic structure is able to almost completely suppress dopamine release, either directly or via the rostromedial tegmental nucleus (RMTg), when rewarding expectations are not met. A major input to the LHb arises from the lateral hypothalamic area (LHA), an important regulator of the homeostatic system. Currently, little is known about the effects of the strong hypothalamic projection on the activity of LHb neurons. In the present study, we analyze neurotransmitters and cellular targets of the LHA-LHb projection in the rat. Therefore, anterograde tracing from the LHA was combined with the visualization of neurotransmitters in the LHb. These experiments revealed a mainly glutamatergic projection, probably exerting excitatory effects on the targeted LHb cells. These cellular targets were analyzed in a second step. Anterograde tracing from the LHA in combination with retrograde tracing from the VTA/RMTg region revealed that LHb neurons projecting to the VTA/RMTg region are densely targeted by the LHA projection. Visualization of synaptophysin at these contact sites indicates that the contact sites indeed are synapses. Taken together, the present study describes a strong mainly glutamatergic projection from the LHA that targets VTA/RMTg-projecting neurons in the LHb. These findings emphasize the potential role of the LHb as direct link between homeostatic areas and reward circuitries, which may be important for the control of homeostatic behaviors.

摘要

稳态描述了个体在不断变化的环境中维持内部稳定条件的基本生物学能力。稳态反应包括内部调整和行为反应。在脊椎动物中,行为反应是由奖励系统引起的。该系统起源于腹侧被盖区(VTA),每当被激活时,都会在前脑增加多巴胺水平。VTA 活动的主要抑制剂是外侧缰核(LHb)。当奖励预期得不到满足时,这个丘脑结构能够通过直接或通过中脑腹侧被盖区(RMTg)几乎完全抑制多巴胺的释放。LHb 的一个主要输入来自外侧下丘脑区域(LHA),它是稳态系统的重要调节者。目前,人们对来自下丘脑的强烈投射对 LHb 神经元活动的影响知之甚少。在本研究中,我们分析了大鼠下丘脑-外侧缰核投射的神经递质和细胞靶点。因此,我们将 LHA 的顺行追踪与 LHb 中的神经递质可视化相结合。这些实验揭示了主要是谷氨酸能的投射,可能对靶向 LHb 细胞产生兴奋作用。在第二步中分析了这些细胞靶点。LHA 的顺行追踪与 VTA/RMTg 区域的逆行追踪相结合,揭示了投射到 VTA/RMTg 区域的 LHb 神经元主要受到 LHA 投射的靶向。在这些接触部位可视化突触小体蛋白表明这些接触部位确实是突触。综上所述,本研究描述了来自 LHA 的强烈的主要谷氨酸能投射,该投射靶向 LHb 中的 VTA/RMTg 投射神经元。这些发现强调了 LHb 作为稳态区域和奖励回路之间直接联系的潜在作用,这可能对稳态行为的控制很重要。

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