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在两种惊恐发作激发大鼠模型中对新型脑渗透性选择性食欲素1受体拮抗剂JNJ-54717793的评估。

Evaluation of JNJ-54717793 a Novel Brain Penetrant Selective Orexin 1 Receptor Antagonist in Two Rat Models of Panic Attack Provocation.

作者信息

Bonaventure Pascal, Dugovic Christine, Shireman Brock, Preville Cathy, Yun Sujin, Lord Brian, Nepomuceno Diane, Wennerholm Michelle, Lovenberg Timothy, Carruthers Nicolas, Fitz Stephanie D, Shekhar Anantha, Johnson Philip L

机构信息

Janssen Research & Development, LLC, San DiegoCA, United States.

Department of Psychiatry, Indiana University School of Medicine, IndianapolisIN, United States.

出版信息

Front Pharmacol. 2017 Jun 9;8:357. doi: 10.3389/fphar.2017.00357. eCollection 2017.

Abstract

Orexin neurons originating in the perifornical and lateral hypothalamic area are highly reactive to anxiogenic stimuli and have strong projections to anxiety and panic-associated circuitry. Recent studies support a role for the orexin system and in particular the orexin 1 receptor (OX1R) in coordinating an integrative stress response. However, no selective OX1R antagonist has been systematically tested in two preclinical models of using panicogenic stimuli that induce panic attack in the majority of people with panic disorder, namely an acute hypercapnia-panic provocation model and a model involving chronic inhibition of GABA synthesis in the perifornical hypothalamic area followed by intravenous sodium lactate infusion. Here we report on a novel brain penetrant, selective and high affinity OX1R antagonist JNJ-54717793 (1S,2R,4R)-7-([(3-fluoro-2-pyrimidin-2-ylphenyl)carbonyl]--[5-(trifluoromethyl)pyrazin-2-yl]-7-azabicyclo[2.2.1]heptan-2-amine). JNJ-54717793 is a high affinity/potent OX1R antagonist and has an excellent selectivity profile including 50 fold versus the OX2R. receptor binding studies demonstrated that after oral administration JNJ-54717793 crossed the blood brain barrier and occupied OX1Rs in the rat brain. While JNJ-54717793 had minimal effect on spontaneous sleep in rats and in wild-type mice, its administration in OX2R knockout mice, selectively promoted rapid eye movement sleep, demonstrating target engagement and specific OX1R blockade. JNJ-54717793 attenuated CO and sodium lactate induced panic-like behaviors and cardiovascular responses without altering baseline locomotor or autonomic activity. These data confirm that selective OX1R antagonism may represent a novel approach of treating anxiety disorders, with no apparent sedative effects.

摘要

起源于穹窿周和下丘脑外侧区的食欲素神经元对致焦虑刺激具有高度反应性,并向与焦虑和恐慌相关的神经回路发出强烈投射。最近的研究支持食欲素系统尤其是食欲素1受体(OX1R)在协调综合应激反应中发挥作用。然而,尚无选择性OX1R拮抗剂在两种临床前模型中进行系统测试,这两种模型使用能在大多数恐慌症患者中诱发恐慌发作的致恐慌刺激,即急性高碳酸血症-恐慌激发模型和一种涉及慢性抑制穹窿周下丘脑区GABA合成随后静脉输注乳酸钠的模型。在此,我们报告一种新型的可穿透脑屏障、具有选择性和高亲和力的OX1R拮抗剂JNJ-54717793(1S,2R,4R)-7-([(3-氟-2-嘧啶-2-基苯基)羰基]-[5-(三氟甲基)吡嗪-2-基]-7-氮杂双环[2.2.1]庚烷-2-胺)。JNJ-54717793是一种高亲和力/强效OX1R拮抗剂,具有出色的选择性,对OX2R的选择性高达50倍。受体结合研究表明,口服JNJ-54717793后可穿过血脑屏障并占据大鼠脑中的OX1R。虽然JNJ-54717793对大鼠和野生型小鼠的自发睡眠影响极小,但其在OX2R基因敲除小鼠中的给药选择性地促进了快速眼动睡眠,证明了靶点参与和特异性OX1R阻断。JNJ-54717793减轻了一氧化碳和乳酸钠诱导的恐慌样行为和心血管反应,而不改变基线运动或自主活动。这些数据证实,选择性OX1R拮抗作用可能代表一种治疗焦虑症的新方法,且无明显镇静作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e83e/5465257/24c7768c493a/fphar-08-00357-g001.jpg

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