Dubé G R, Lehto Sonya G, Breese Nicole M, Baker Scott J, Wang Xueqing, Matulenko Mark A, Honoré Prisca, Stewart Andrew O, Moreland Robert B, Brioni Jorge D
Abbott Laboratories, Neuroscience Research, Building AP9A-Dept. R4ND,Abbott Park, IL 60064-6118, USA.
Pain. 2005 Sep;117(1-2):88-96. doi: 10.1016/j.pain.2005.05.021.
Acid Sensing Ion Channels (ASICs) are a group of sodium-selective ion channels that are activated by low extracellular pH. The role of ASIC in disease states remains unclear partly due to the lack of selective pharmacological agents. In this report, we describe the effects of A-317567, a novel non-amiloride blocker, on three distinct types of native ASIC currents evoked in acutely dissociated adult rat dorsal root ganglion (DRG) neurons. A-317567 produced concentration-dependent inhibition of all pH 4.5-evoked ASIC currents with an IC50 ranging between 2 and 30muM, depending upon the type of ASIC current activated. Unlike amiloride, A-317567 equipotently blocked the sustained phase of ASIC3-like current, a biphasic current akin to cloned ASIC3, which is predominant in DRG. When evaluated in the rat Complete Freud's Adjuvant (CFA)-induced inflammatory thermal hyperalgesia model, A-317567 was fully efficacious at a dose 10-fold lower than amiloride. A-317567 was also potent and fully efficacious when tested in the skin incision model of post-operative pain. A-317567 was entirely devoid of any diuresis or natriuresis activity and showed minimal brain penetration. In summary, A-317567 is the first reported small molecule non-amiloride blocker of ASIC that is peripherally active and is more potent than amiloride in vitro and in vivo pain models. The discovery of A-317567 will greatly help to enhance our understanding of the physiological and pathophysiological role of ASICs.
酸敏感离子通道(ASICs)是一类钠选择性离子通道,可被低细胞外pH激活。ASIC在疾病状态中的作用仍不清楚,部分原因是缺乏选择性药理剂。在本报告中,我们描述了新型非阿米洛利阻滞剂A-317567对急性分离的成年大鼠背根神经节(DRG)神经元中诱发的三种不同类型的天然ASIC电流的影响。A-317567对所有pH 4.5诱发的ASIC电流产生浓度依赖性抑制,IC50介于2至30μM之间,具体取决于激活的ASIC电流类型。与阿米洛利不同,A-317567同等程度地阻断了ASIC3样电流的持续阶段,这是一种类似于克隆ASIC3的双相电流,在DRG中占主导地位。在大鼠完全弗氏佐剂(CFA)诱导的炎性热痛觉过敏模型中评估时,A-317567在比阿米洛利低10倍的剂量下就完全有效。在术后疼痛的皮肤切口模型中测试时,A-317567也具有强效且完全有效。A-317567完全没有任何利尿或利钠活性,并且脑渗透率极低。总之,A-317567是首个报道的ASIC小分子非阿米洛利阻滞剂,具有外周活性,在体外和体内疼痛模型中比阿米洛利更有效。A-317567的发现将极大地有助于增强我们对ASICs生理和病理生理作用的理解。