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新型胆碱能离子通道激动剂SIB-1765F的药理学特性

Pharmacological characterization of SIB-1765F: a novel cholinergic ion channel agonist.

作者信息

Sacaan A I, Reid R T, Santori E M, Adams P, Correa L D, Mahaffy L S, Bleicher L, Cosford N D, Stauderman K A, McDonald I A, Rao T S, Lloyd G K

机构信息

SIBIA Neurosciences, Inc., La Jolla, California, USA.

出版信息

J Pharmacol Exp Ther. 1997 Jan;280(1):373-83.

PMID:8996218
Abstract

Nicotine, the prototypical agonist for neuronal nicotinic acetylcholine receptors (NAChR), nonselectively activates NAChR limiting its use in elucidating the function of NAChR subtypes. SIB-1765F is a subtype selective NAChR agonist that displaces [3H]-nicotine binding with an IC50 of 4.6 nM and [3H]-cytisine binding with an IC50 of 12.2 nM which is 2000- to 6000-fold lower than its displacement of [3H]-QNB or [125I]-alpha-bungarotoxin. SIB-1765F did not inhibit human or rat cholinesterases or the uptake of [3H]-DA in synaptosomal preparations. SIB-1765F mimicked (-)-nicotine in stimulating [3H]-DA release from rat striatal and olfactory tubercle slices, with EC50 values of 99.6 and 39.6 microM, respectively. Such stimulation was sensitive to mecamylamine and DH beta E. SIB-1765F also released endogenous DA in the striatum and the nucleus accumbens as measured by in vivo microdialysis. SIB-1765F was less efficacious than (-)-nicotine at stimulating [3H]-NE release from rat hippocampal slices; in contrast, SIB-1765F increased [3H]-NE release from rat thalamic and cortical slices with efficacies approaching those of (-)-nicotine. Similar to (-)-nicotine and (+/-)-epibatidine, subcutaneous administration of SIB-1765F increased the turnover rate of dopamine ex vivo both in the striatum and olfactory tubercles in a mecamylamine-sensitive manner. Because the release of striatal DA and hippocampal NE appears to be regulated by distinct NAChR, differential effects of SIB-1765F on striatal DA and hippocampal NE release supports the NAChR subtype selectivity of SIB-1765F compared to (-)-nicotine. This is further demonstrated by observations showing that SIB-1765F has a higher affinity for h alpha 4 beta 2 NAChR relative to h alpha 4 beta 4 NAChRs in displacing [3H]-epibatidine binding and increasing cytosolic CA+2 concentration in cell lines stably expressing h alpha 4 beta 2 or h alpha 4 beta 4.

摘要

尼古丁是神经元烟碱型乙酰胆碱受体(NAChR)的典型激动剂,它会非选择性地激活NAChR,这限制了其在阐明NAChR亚型功能方面的应用。SIB - 1765F是一种亚型选择性NAChR激动剂,它取代[³H] - 尼古丁结合的IC50为4.6 nM,取代[³H] - 金雀花碱结合的IC50为12.2 nM,这比其取代[³H] - QNB或[¹²⁵I] - α - 银环蛇毒素的能力低2000至6000倍。SIB - 1765F在突触体标本中不抑制人或大鼠胆碱酯酶,也不抑制[³H] - DA的摄取。SIB - 1765F在刺激大鼠纹状体和嗅结节切片释放[³H] - DA方面模拟了( - ) - 尼古丁,其EC50值分别为99.6和39.6 microM。这种刺激对美加明和二氢β - 刺桐碱敏感。通过体内微透析测量,SIB - 1765F还能释放纹状体和伏隔核中的内源性DA。在刺激大鼠海马切片释放[³H] - NE方面,SIB - 1765F的效力低于( - ) - 尼古丁;相反,SIB - 1765F增加大鼠丘脑和皮质切片中[³H] - NE的释放,其效力接近( - ) - 尼古丁。与( - ) - 尼古丁和(±) - 依博加碱类似,皮下注射SIB - 1765F以美加明敏感的方式增加了纹状体和嗅结节中多巴胺的体外周转率。由于纹状体DA和海马NE的释放似乎受不同的NAChR调节,SIB - 1765F对纹状体DA和海马NE释放的不同影响支持了与( - ) - 尼古丁相比,SIB - 1765F具有NAChR亚型选择性。在取代[³H] - 依博加碱结合以及增加稳定表达hα4β2或hα4β4的细胞系中的胞质Ca²⁺浓度方面,SIB - 1765F相对于hα4β4 NAChR对hα4β2 NAChR具有更高的亲和力,这进一步证明了这一点。

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