首页> 外文期刊>Brain research >Effects of GABA(B), 5-HT(1A), and 5-HT(2) receptor stimulation on activation and inhibition of the rat lateral amygdala following medial geniculate nucleus stimulation in vivo.
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Effects of GABA(B), 5-HT(1A), and 5-HT(2) receptor stimulation on activation and inhibition of the rat lateral amygdala following medial geniculate nucleus stimulation in vivo.

机译:GABA(B),5-HT(1A)和5-HT(2)受体刺激对体内膝状核刺激后大鼠外侧杏仁核的激活和抑制的影响。

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The input from the medial geniculate nucleus of the thalamus (MGN) to the lateral amygdala is known to be important in the regulation of fear and anxiety. Modulation of this pathway may be useful for the treatment of anxiety disorders. We set out to determine whether simple extracellular electrophysiological techniques could be used to study pharmacological modulation of this pathway in vivo. We studied the effects of GABA(B), 5-HT(1), and 5-HT(2) receptor agonists on activity in the lateral amygdala following stimulation of the MGN in isoflurane-anaesthetised rats. Electrical stimulation of the MGN evoked a characteristic biphasic field potential in the lateral amygdala. Baclofen (10 mg kg(-1), iv) inhibited the evoked potential with an effect that was most marked on the positive-going component (80+/-9% inhibition; P<0.05). Baclofen also significantly reduced paired-pulse inhibition of the negative-going component at short interpulse intervals (<200 ms). The 5-HT(1A) receptor ligands, 8-OH-DPAT (60 mug kg(-1), iv) and WAY-100635 (0.5 mg kg(-1), iv) were without effect on evoked responses or paired-pulse relationship. In contrast, the 5-HT(2) receptor agonist, DOI, caused a rapid inhibition of the field potential (to 59.33+/-11.41% of the baseline response; P<0.05). This effect was blocked by ketanserin, either following systemic (0.5 mg kg(-1), iv) or intra-amygdala administration. These results show that GABA(B) and 5-HT(2) receptor agonists can modulate activation of the lateral amygdala following MGN stimulation; furthermore, GABA(B) receptor agonists appear to have a profound effect on local circuit inhibition within the lateral amygdala. The results support the use of in vivo field potential recording within the MGN-lateral amygdala pathway to evaluate this as a possible site of action for novel anxiolytic drugs.
机译:已知从丘脑内侧膝状核(MGN)到外侧杏仁核的输入在调节恐惧和焦虑中很重要。该途径的调节可用于治疗焦虑症。我们着手确定简单的细胞外电生理技术是否可用于研究体内该途径的药理学调节。我们研究了异氟烷麻醉大鼠中的MGN刺激后,GABA(B),5-HT(1)和5-HT(2)受体激动剂对杏仁核外侧活动的影响。 MGN的电刺激在杏仁核外侧诱发了特征性的双相场电势。 Baclofen(10 mg kg(-1),iv)抑制诱发电位,对正向成分的影响最明显(抑制80 +/- 9%; P <0.05)。巴氯芬还可以在较短的脉冲间隔(<200毫秒)内显着降低负向分量的成对脉冲抑制。 5-HT(1A)受体配体8-OH-DPAT(60 mug kg(-1),iv)和WAY-100635(0.5 mg kg(-1),iv)对诱发反应无影响或配对-脉冲关系。相比之下,5-HT(2)受体激动剂DOI引起了对场势的快速抑制(至基线响应的59.33 +/- 11.41%; P <0.05)。全身(0.5 mg kg(-1),iv)或杏仁核内给药后,酮色林可阻断这种作用。这些结果表明,GABA(B)和5-HT(2)受体激动剂可以调节MGN刺激后外侧杏仁核的激活。此外,GABA(B)受体激动剂似乎对杏仁核外侧的局部回路抑制具有深远的影响。结果支持在MGN侧扁桃体途径内体内场电势记录的使用,以将其评估为新型抗焦虑药的可能作用部位。

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