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首页> 外文期刊>Neurotoxicity research >Identification of TAAR5 Agonist Activity of Alpha-NETA and Its Effect on Mismatch Negativity Amplitude in Awake Rats
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Identification of TAAR5 Agonist Activity of Alpha-NETA and Its Effect on Mismatch Negativity Amplitude in Awake Rats

机译:α-neta拍摄拍摄激活活动的鉴定及其对清醒大鼠不匹配消极性振幅的影响

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摘要

Mismatch negativity (MMN) is a well-defined component of human event-related potentials that reflects the pre-attentive, stimulus-discrimination process and is associated with involuntary switching of attention. MMN-like responses detected in animal models provide an opportunity to investigate the neural mechanisms of this process that involves several neurotransmitter and neuromodulator systems. Trace amines are believed to play a significant role in neuromodulation of synaptic transmission. The present study aimed to determine the role of trace amine-associated receptor 5 (TAAR5) in the MMN-like response in rats. First, using a bioluminescence resonance energy transfer (BRET) cAMP biosensor, we performed unbiased screening of TAAR5 ligands from a commercially available compound library (661 compounds) and identified 2-(alpha-naphthoyl)ethyltrimethylammonium iodide (alpha-NETA) as a potent (EC50 150 nM) TAAR5 agonist. Then, we recorded auditory event-related potentials during an oddball paradigm in awake freely moving rats that were intraperitoneally injected with a vehicle or two doses of the putative TAAR5 agonist alpha-NETA. The MMN-like response was increased by alpha-NETA 3 mg/kg dose, but not by 1 mg/kg dose or 0.9% saline solution. These results suggest that the MMN-like response in rats may be modulated, at least in part, through TAAR5-dependent processes.
机译:不匹配的消极性(MMN)是人类事件相关潜力的明确定义组成部分,反映了前提,刺激歧视过程,与非自愿切换有关。在动物模型中检测到的MMN样响应提供了研究该过程的神经机制,该过程涉及几种神经递质和神经调节系统。痕量胺被认为在突触传递的神经调节中发挥重要作用。本研究旨在确定痕量胺相关受体5(Taar5)在大鼠中MMN的反应中的作用。首先,使用生物发光共振能量转移(BRET)阵营生物传感器,我们从市售的复合文库(661化合物)进行了淘汰扭纹配体的筛选,并将2-(α-萘酰基)乙基三甲基碘化物(α-Neta)鉴定为有效性(EC50 150 NM)Taar5激动剂。然后,我们在令人醒目的令人难以自由移动的大鼠中记录了听觉的事件相关电位,这些大鼠用载体或两剂推定的τAR5激动剂α-Neta腹腔内注射。通过α-NetA 3mg / kg剂量增加MMN样响应,但不增加1mg / kg剂量或0.9%盐水溶液。这些结果表明,大鼠中的MMN样响应可以至少部分地通过呈淘汰的过程来调节。

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