首页> 外文期刊>Behavioural Brain Research: An International Journal >Involvement of serotonin 2A receptor activation in modulating medial prefrontal cortex and amygdala neuronal activation during novelty-exposure
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Involvement of serotonin 2A receptor activation in modulating medial prefrontal cortex and amygdala neuronal activation during novelty-exposure

机译:血清素2A受体激活在新颖性暴露过程中调节内侧前额叶皮质和Amygdala神经元激活中的参与

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The medial prefrontal cortex (PFC) plays a major role in executive function by exerting a top-down control onto subcortical areas. Novelty-induced frontal cortex activation is 5-HT2A receptor (5-HT2AR) dependent. Here, we further investigated how blockade of 5-HT(2A)Rs in mice exposed to a novel open-field arena affects medial PFC activation and basolateral amygdala (BLA) reactivity. We used c-Fos immunoreactivity (IR) as a marker of neuronal activation and stereological quantification for obtaining the total number of c-Fos-IR neurons as a measure of regional activation. We further examined the impact of 5-HT2AR blockade on the striatal-projecting BLA neurons. Systemic administration of ketanserin (0.5 mg/kg) prior to novel open-field exposure resulted in reduced total numbers of c-Fos-IR cells in dorsomedial PFC areas and the BLA. Moreover, there was a positive correlation between the relative time spent in the centre of the open-field and BLA c-Fos-IR in the ketanserin-treated animals. Unilateral medial PFC lesions blocked this effect, ascertaining an involvement of this frontal cortex area. On the other hand, medial PFC lesioning exacerbated the more anxiogenic-like behaviour of the ketanserin-treated animals, upholding its involvement in modulating averseness. Ketanserin did not affect the number of activated striatal-projecting BLA neurons (measured by number of Cholera Toxin b (CTb) retrograde labelled neurons also being c-Fos-IR) following CTb injection in the ventral striatum. These results support a role of 5-HT2AR activation in modulating mPFC and BLA activation during exposure to a novel environment, which may be interrelated. Conversely, 5-HT2AR blockade does not seem to affect the amygdala-striatal projection. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过将自上而下的控制施加到下调区域,内侧前额叶皮质(PFC)在执行功能中起主要作用。新型诱导的额叶激活是5-HT2A受体(5-HT2AR)依赖性。在这里,我们进一步研究了暴露于新型开场竞技场的小鼠中的5-HT(2A)RS的阻断会影响内侧PFC活化和基底外侧Amygdala(BLA)反应性。我们使用C-FOS免疫反应性(IR)作为神经元激活和立体定量的标志物,用于获得C-FOS-IR神经元的总数作为区域激活的量度。我们进一步研究了5-HT2AR封锁对纹纹突出的BLA神经元的影响。新型开放式暴露前的ketanserin(0.5mg / kg)的全身施用导致背侧PFC区域和BLA中的C-FOS-IR细胞总数减少。此外,在酮蛋白处理的动物中的开放场和BLA C-FOS-IR中心所花费的相对时间与酮类处理动物的动物之间存在正相关性。单侧内侧PFC病变阻断了这种效果,确定了这个正面皮质区域的参与。另一方面,内侧PFC病变加剧了酮蛋白处理的动物的更令人焦虑的行为,坚持其涉及调节疏动。在腹侧纹体中CTB注射后,Ketanserin不会影响活化的纹突出的BLA神经元(通过霍乱毒素B(CTB)逆行标记的神经元的数量逆行标记神经元)。这些结果支持5-HT2AR活化在暴露于新型环境期间调节MPFC和BLA激活的作用,这可能是相互关联的。相反,5-HT2AR封锁似乎不会影响杏仁队的偏角投影。 (c)2017 Elsevier B.v.保留所有权利。

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