Dumuis A, Gozlan H, Sebben M, Ansanay H, Rizzi C A, Turconi M, Monferini E, Giraldo E, Schiantarelli P, Ladinsky H
Centre CNRS-INSERM de Pharmacologie-Endocrinologie, Montpellier, France.
Naunyn Schmiedebergs Arch Pharmacol. 1992 Mar;345(3):264-9. doi: 10.1007/BF00168685.
Three chemical classes of serotonin 5-HT4 receptor agonists have been identified so far: 5-substituted indoles (e.g. 5-HT), benzamides (e.g. renzapride) and benzimidazolones (e.g. BIMU 8). In a search for 5-HT4 receptor antagonists, we have discovered that the benzimidazolone derivative DAU 6285 (for structure see text), is 3-5 times more potent than tropisetron in blocking 5-HT, renzapride and BIMU 8 induced stimulation of adenylate cyclase activity in mouse embryo colliculi neurons. Schild plot analysis yielded Ki values of 220, 181 and 255 nmol/l, respectively. In addition, DAU 6285 showed poor activity as a 5-HT3 receptor ligand with respect to tropisetron, as demonstrated by in vitro binding studies (Ki, 322 vs 2.8 nmol/l) and by its antagonistic activity in the Bezold-Jarisch reflex test (ID50, 231 vs 0.5 micrograms/kg, i.v.). No significant binding (Ki greater than 10 mumol/l) of DAU 6285 to serotonergic 5-HT1A, 5-HT1B, 5-HT1C, 5-HT1D, and 5-HT2 receptors as well as to adrenergic alpha 1, alpha 2, dopaminergic D1, D2 or muscarinic M1-M3 receptor subtypes was found. The data indicate that DAU 6285 has a somewhat higher affinity than tropisetron for 5-HT4 receptors, a property confirmed in functional tests, and much lower affinity than tropisetron for 5-HT3 receptors. The compound represents a new interesting tool for investigating the pharmacological and physiological properties of 5-HT4 receptors.
到目前为止,已鉴定出三类5-羟色胺5-HT4受体激动剂:5-取代吲哚(如5-HT)、苯甲酰胺(如瑞扎普明)和苯并咪唑酮(如BIMU 8)。在寻找5-HT4受体拮抗剂的过程中,我们发现苯并咪唑酮衍生物DAU 6285(结构见正文)在阻断5-HT、瑞扎普明和BIMU 8诱导的小鼠胚胎丘脑中腺苷酸环化酶活性刺激方面,比托烷司琼强3至5倍。Schild图分析得出的Ki值分别为220、181和255 nmol/l。此外,体外结合研究(Ki,322对2.8 nmol/l)及其在贝佐尔德-雅里什反射试验中的拮抗活性(ID50,231对0.5微克/千克,静脉注射)表明,与托烷司琼相比,DAU 6285作为5-HT3受体配体的活性较差。未发现DAU 6285与5-羟色胺能5-HT1A、5-HT1B、5-HT1C、5-HT1D和5-HT2受体以及肾上腺素能α1、α2、多巴胺能D1、D2或毒蕈碱M1-M3受体亚型有显著结合(Ki大于10 μmol/l)。数据表明,DAU 6285对5-HT4受体的亲和力比托烷司琼略高,这一特性在功能试验中得到证实,而对5-HT3受体的亲和力比托烷司琼低得多。该化合物是研究5-HT4受体药理和生理特性的一种新的有趣工具。