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Dopamine receptor signaling in the medial orbital frontal cortex and the acquisition and expression of fructose-conditioned flavor preferences in rats

机译:大鼠内侧眶额叶皮层中的多巴胺受体信号传导以及果糖条件下的风味偏好的获取和表达

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Systemic dopamine (DA) D1 (SCH23390: SCH) and D2 (raclopride: RAC) antagonists blocked fructose-conditioned flavor preference (CFP) acquisition and expression. Fructose-CFP acquisition was eliminated by medial prefrontal cortex (mPFC) SCH and mPFC or amygdala (AMY) RAC. Fructose-CFP expression was reduced following SCH or RAC in AMY or nucleus accumbens (NAc). The present study examined fructose-CFP acquisition and expression following SCH and RAC in the medial orbital frontal cortex (MOFC), another ventral tegmental area DA target. For fructose-CFP acquisition, five groups of rats received vehicle, SCH (24 or 48 nmol) or RAC (24 or 48 nmol) in the MOFC 0.5 h prior to 8 training sessions with one flavor (CS+/Fs) mixed in 8% fructose and 0.2% saccharin, and another flavor (CS-/ s) mixed in 0.2% saccharin. In six 2-bottle choice tests in 0.2% saccharin, similar fructose-CFP preferences occurred in groups trained with vehicle (76-77%), SCH24 (69-78%), SCH48 (70-74%) and RAC48 (85-92%). RAC24-trained rats displayed significant CS+ preferences during the first (79%) and third (71%), but not second (58%) test pair. For fructose-CFP expression, rats similarly trained with CS+/Fs and CS- solutions received 2-bottle choice tests following MOFC injections of SCH or RAC (12-48 nmol). CS+ preference expression was significantly reduced by RAC (48 nmol: 58%), but not SCH relative to vehicle (78%). A control group receiving RAC in the dorsolateral prefrontal cortex displayed fructose-CFP expression similar to vehicle. These data demonstrate differential frontal cortical DA mediation of fructose-CFP with mPFC D1 and D2 signaling exclusively mediating acquisition, and MOFC D2 signaling primarily mediating expression. (C) 2014 Elsevier B.V. All rights reserved.
机译:全身性多巴胺(DA)D1(SCH23390:SCH)和D2(雷氯必利:RAC)拮抗剂阻断果糖条件下的风味偏好(CFP)的获取和表达。内侧前额叶皮层(mPFC)SCH和mPFC或杏仁核(AMY)RAC消除了果糖CFP的获取。 SCH或RAC后,AMY或伏隔核(NAc)中的果糖CFP表达降低。本研究检查了在内侧腹额叶皮层(MOFC)(另一个腹侧被盖区DA靶标)中的SCH和RAC后,果糖CFP的获取和表达。对于果糖-CFP采集,五组大鼠在8次训练之前的0.5个小时内在MOFC中接受了媒介物,SCH(24或48 nmol)或RAC(24或48 nmol)或RAC(24或48 nmol),其中一种口味(CS + / Fs)混合了8%果糖和0.2%的糖精以及另一种风味剂(CS- / s)混合在0.2%的糖精中。在使用0.2%糖精进行的六次2瓶选择测试中,接受媒介物(76-7%),SCH24(69-78%),SCH48(70-74%)和RAC48(85- 92%)。接受RAC24训练的大鼠在第一对(79%)和第三对(71%)期间显示出显着的CS +偏好,但第二对(58%)则没有。对于果糖-CFP表达,在MOFC注射SCH或RAC(12-48 nmol)后,接受CS + / Fs和CS-溶液训练的大鼠接受了2瓶选择测试。 RAC(48 nmol:58%)显着降低了CS +偏好表达,但相对于赋形剂(78%),却没有SCH降低。在背外侧前额叶皮层中接受RAC的对照组显示出与载体相似的果糖CFP表达。这些数据表明果糖-CFP的差异额叶皮层DA介导的mPFC D1和D2信号仅介导采集,而MOFC D2信号主要介导表达。 (C)2014 Elsevier B.V.保留所有权利。

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