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Effects of single swim stress on changes in TRPV1-mediated plasticity in the amygdala.

机译:单一游泳压力对杏仁核中TRPV1介导的可塑性变化的影响。

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By examining the involvement of transient receptor potential vanilloid type 1 (TRPV1) in the stress modulation of learning and memory processes in mice, we evaluated the effects of endovanilloid N-oleoyldopamine (OLDA) on the long-term potentiation (LTP) of the lateral nucleus of the amygdala (LA). After high-frequency stimulation of external capsule fibers we found that LA-LTP is reduced in OLDA-treated slices derived from adult C57BL/6 control mice. The specificity of the TRPV1 receptor activation by OLDA was confirmed by blocking the OLDA-induced inhibitory effect on LA-LTP with the specific TRPV1 receptor antagonist AMG 9810. The specificity of OLDA was further supported by using TRPV1 deficient mice, where the effect of OLDA on LA-LTP was missing. Following exposure to a forced swim test (FST) OLDA enhanced LA-LTP in control but not TRPV1-deficient mice. The results also show that a short period of acute stress significantly impairs LA-LTP. Since we have recently shown the involvement of cannabinoid CB1 receptors in the mediation of capsaicin-induced inhibitory effects on LA-LTP ([23] Zschenderlein et al., 2011), it is reasonable to assume that the OLDA-induced enhancement of LA-LTP after the forced swim test can be attributed to the up-regulation of TRPV1 and the action of ligands such as anandamide on TRPV1. As a result, stimulation of TRPV1 receptors rescues LTP in slices derived from swim-stressed mice.
机译:通过检查小鼠中学习和记忆过程的应激调节中的瞬态受体电位香草素型1(TRPV1)的参与,我们评估了香草素N-油酰多巴胺(OLDA)对侧脑的长期增强(LTP)的影响杏仁核(LA)的核。在高频刺激外部囊状纤维后,我们发现在成年C57BL / 6对照小鼠的OLDA处理切片中,LA-LTP降低。通过用特异性TRPV1受体拮抗剂AMG 9810阻断OLDA诱导的对LA-LTP的抑制作用,证实了OLDA激活TRPV1受体的特异性。通过使用TRPV1缺陷型小鼠进一步支持了OLDA的特异性,其中OLDA的作用在LA-LTP上丢失。暴露于强迫游泳测试(FST)后,OLDA在对照组而非TRPV1缺陷小鼠中增强了LA-LTP。结果还表明,短期急性应激会明显损害LA-LTP。由于我们最近显示大麻素CB1受体参与了辣椒素对LA-LTP的抑制作用的介导([23] Zschenderlein等,2011),因此可以合理地假设OLDA诱导的LA-LTP增强强迫游泳试验后的LTP可以归因于TRPV1的上调和配体(如anandamide)对TRPV1的作用。结果,刺激TRPV1受体可以挽救源自游泳压力小鼠的切片中的LTP。

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