首页> 外文期刊>Psychopharmacology >Acid sensing ion channel (ASIC) inhibitors exhibit anxiolytic-like activity in preclinical pharmacological models.
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Acid sensing ion channel (ASIC) inhibitors exhibit anxiolytic-like activity in preclinical pharmacological models.

机译:酸感应离子通道(ASIC)抑制剂在临床前药理模型中表现出抗焦虑活性。

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RATIONALE: Acid sensing ion channels (ASICs) are proton-gated ion channels located in the central and peripheral nervous systems. Of particular interest is ASIC1a, which is located in areas associated with fear and anxiety behaviors. Recent reports suggest a role for ASIC1a in preclinical models of fear conditioning and anxiety. OBJECTIVES: The present experiments evaluated various ASIC inhibitors in preclinical models of autonomic and behavioral parameters of anxiety. In addition, neurochemical studies evaluated the effects of an ASIC inhibitor (A-317567) on neurotransmitter levels in the amygdala. RESULTS: In electrophysiological studies using hippocampal primary neuronal cultures, three ASIC inhibitors (PcTX-1, A-317567, and amiloride) produced concentration-dependent inhibition of acid-evoked currents. In the stress-induced hyperthermia model, acute administration of psalmotoxin 1 (PcTX-1; 10-56 ng, i.c.v.), A-317567 (0.1-1.0 mg/kg, i.p.), and amiloride (10-100 mg/kg, i.p.) prevented stress-inducedelevations in core body temperature. In the four-plate test, acute treatment with PcTX-1 (10-56 ng, i.c.v.) and A-317567 (0.01-0.1 mg/kg, i.p.), but not amiloride (3-100 mg/kg, i.p.), produced dose-dependent and significant increases in the number of punished crossings relative to vehicle-treated animals. Additionally, PcTX-1 (56-178 ng, i.c.v.), A-317567 (0.1-10 mg/kg, i.p.), and amiloride (10-100 mg/kg, i.p.) lacked significant anxiolytic-like activity in the elevated zero maze. In neurochemical studies, an infusion of A-317567 (100 microM) into the amygdala significantly elevated the extracellular levels of GABA, but not glutamate, in this brain region. CONCLUSIONS: These findings demonstrate that ASIC inhibition produces anxiolytic-like effects in some behavioral models and indicate a potential role for GABAergic mechanisms to underlie these anxiolytic-like effects.
机译:理由:酸敏感离子通道(ASICs)是位于中枢和周围神经系统的质子门控离子通道。 ASIC1a特别令人关注,它位于与恐惧和焦虑行为相关的区域。最近的报道表明,ASIC1a在恐惧条件和焦虑的临床前模型中起作用。目的:本实验在焦虑的自主神经和行为参数的临床前模型中评估了各种ASIC抑制剂。此外,神经化学研究评估了ASIC抑制剂(A-317567)对杏仁核神经递质水平的影响。结果:在使用海马原代神经元培养物的电生理研究中,三种ASIC抑制剂(PcTX-1,A-317567和阿米洛利)对酸引起的电流产生浓度依赖性抑制作用。在压力诱发的高温模型中,急性施用psalmotoxin 1(PcTX-1; 10-56 ng,icv),A-317567(0.1-1.0 mg / kg,ip)和阿米洛利(10-100 mg / kg, ip)防止了压力引起的核心体温升高。在四板试验中,使用PcTX-1(10-56 ng,icv)和A-317567(0.01-0.1 mg / kg,ip)急性治疗,但不使用阿米洛利(3-100 mg / kg,ip)急性治疗,与经媒介物处理的动物相比,可产生的剂量依赖性和显着增加的受罚杂交次数。此外,PcTX-1(56-178 ng,icv),A-317567(0.1-10 mg / kg,ip)和阿米洛利(10-100 mg / kg,ip)在升高的零位缺乏明显的抗焦虑作用。迷宫。在神经化学研究中,在杏仁核中注入A-317567(100 microM)可以显着提高该大脑区域中GABA的细胞外水平,而不是谷氨酸。结论:这些发现表明,ASIC抑制在某些行为模型中会产生类似抗焦虑作用,并表明GABA能机制可能是这些抗焦虑作用的基础。

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