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RS 23597-190:一种强效且选择性的5-羟色胺4受体拮抗剂。

RS 23597-190: a potent and selective 5-HT4 receptor antagonist.

作者信息

Eglen R M, Bley K, Bonhaus D W, Clark R D, Hegde S S, Johnson L G, Leung E, Wong E H

机构信息

Institute of Pharmacology, Syntex Discovery Research, Palo Alto, CA 94304.

出版信息

Br J Pharmacol. 1993 Sep;110(1):119-26. doi: 10.1111/j.1476-5381.1993.tb13780.x.

Abstract
  1. The pharmacological properties of RS 23597-190 (3-(piperdine-1-yl)-propyl-4-amino-5-chloro-2-methoxy benzoate hydrochloride) have been studied in vitro and in vivo. 2. RS 23597-190 competitively antagonized 5-HT4 receptor-mediated relaxations of rat, carbachol precontracted oesophageal muscularis mucosae, (pA2 = 7.8 +/- 0.1; Schild slope = 1.2 +/- 0.2). Affinity estimates (-log KB) at 5-HT4 receptors using either renzapride or SC-53116 as agonists yielded a -log KB value of 8.0 +/- 0.01. In contrast, RS 23597-190 failed to antagonize contractile responses to 5-HT of guinea-pig ileal 5-HT3 receptors, even at concentrations up to 10 microM. 3. Increases in short-circuit current, induced by 5-HT, were studied in guinea-pig ileal mucosal sheets. Concentration-response curves to 5-HT were biphasic, with the high potency phase to 5-HT inhibited by RS 23597-190 and mimicked by 5-methoxytryptamine. The -log KB value for RS 23597-190 at the high potency phase was 7.3 confirming that 5-HT4 receptors mediated the high potency phase. 4. In rat isolated vagus nerve, 5-HT elicited a slow, maintained depolarization at low concentrations and a rapid, transient depolarization at higher concentrations. The high potency, slow depolarizing phase to 5-HT was abolished selectively in the presence of 1 microM RS 23597-190 and the low potency phase was abolished selectively in the presence of 1 microM ondansetron. These data confirm that 5-HT4 and 5-HT3 receptors mediated slow and fast depolarization responses, respectively. 5. At 5-HT3 binding sites in membranes from NG 108-15 cells, labelled by [3H]-quipazine, RS 23597-190 exhibited an apparent affinity (- log Ki) of 5.7 +/- 0.1. At 5-HT3 receptors in membranes from rat cerebral cortex, labelled by [3H]-RS 42358-197, the apparent affinity (- log Ki) of RS 23597-190 was also 5.7 +/- 0.1. In both studies, Hill coefficients were not significantly different from unity. At 5-HT1A, 5-HT2,muscarinic M1, M2, M3, M4 and dopamine D1 and D2 receptors, RS 23597-190 exhibited low apparent affinities, with all - log Ki values less than 5.5.6. Intravenous infusion of RS 23597-190 in the conscious, restrained rat antagonized the von Bezold Jarisch reflex induced by 2-methyl 5-HT, with an ID50 of 300 microg kg-1 min-1, i.v. In the anaesthetized,bilaterally vagotomized micropig, RS 23597-190 (6 mg kg-1, i.v.) antagonized 5-HT-induced tachycardia with a half-life of 77 (63-99) min. Transient arrhythmic effects were noted after administration of the compound.7. In conclusion, RS 23597-190 acts as a high affinity, selective competitive antagonist at 5-HT4 receptors. Thus, the compound appears to be a useful tool for 5-HT4 receptor identification in vitro. In vivo, the compound is rapidly metabolized in pigs such that 5-HT4 blockade is not maintained. However,in the rat, when given by infusion, RS 23597-190 antagonizes 5-HT3 mediated responses, at doses consistent with a low affinity 5-HT3 receptor. These data suggest that, under appropriate experimental conditions, RS 23597-190 may also be used in vivo to characterize further 5-HT4 receptor function.
摘要
  1. 已在体外和体内研究了RS 23597-190(3-(哌啶-1-基)-丙基-4-氨基-5-氯-2-甲氧基苯甲酸盐酸盐)的药理特性。2. RS 23597-190竞争性拮抗5-HT4受体介导的大鼠食管肌层黏膜舒张,该肌层由卡巴胆碱预收缩(pA2 = 7.8±0.1;希尔斜率 = 1.2±0.2)。以瑞波西汀或SC-53116作为激动剂时,对5-HT4受体的亲和力估计值(-log KB)产生的-log KB值为8.0±0.01。相比之下,即使在浓度高达10μM时,RS 23597-190也未能拮抗豚鼠回肠5-HT3受体对5-HT的收缩反应。3. 在豚鼠回肠黏膜片中研究了5-HT诱导的短路电流增加情况。对5-HT的浓度-反应曲线呈双相性,5-HT的高效能相受到RS 23597-190抑制,并被5-甲氧基色胺模拟。RS 23597-190在高效能相的-log KB值为7.3,证实5-HT4受体介导了高效能相。4. 在大鼠离体迷走神经中,5-HT在低浓度时引发缓慢、持续的去极化,在较高浓度时引发快速、短暂的去极化。在存在1μM RS 23597-190时,5-HT的高效能、缓慢去极化相被选择性消除,在存在1μM昂丹司琼时,低效能相被选择性消除。这些数据证实5-HT4和5-HT3受体分别介导缓慢和快速去极化反应。5. 在由[3H]-喹哌嗪标记的NG 108-15细胞膜的5-HT3结合位点处,RS 23597-190表现出的表观亲和力(-log Ki)为5.7±0.1。在由[3H]-RS 42358-197标记的大鼠大脑皮质膜的5-HT3受体处,RS 23597-190的表观亲和力(-log Ki)也为5.7±0.1。在两项研究中,希尔系数与1无显著差异。在5-HT1A、5-HT2、毒蕈碱M1、M2、M3、M4以及多巴胺D1和D2受体处,RS 23597-190表现出低表观亲和力,所有-log Ki值均小于5.5。6. 对清醒、受限的大鼠静脉输注RS 23597-190可拮抗由2-甲基5-HT诱导的冯贝佐尔德-雅里什反射,静脉注射的半数抑制剂量(ID50)为300μg kg-1 min-1。在麻醉、双侧迷走神经切断的小型猪中,RS 23597-190(6mg kg-1,静脉注射)拮抗5-HT诱导的心动过速,半衰期为77(63 - 99)分钟。给药后观察到短暂的心律失常效应。7. 总之,RS 23597-190作为5-HT4受体的高亲和力、选择性竞争性拮抗剂。因此,该化合物似乎是体外鉴定5-HT4受体的有用工具。在体内,该化合物在猪体内迅速代谢,以至于无法维持5-HT4阻断作用。然而,在大鼠中,通过输注给药时,RS 23597-190在与低亲和力5-HT3受体一致的剂量下拮抗5-HT3介导的反应。这些数据表明,在适当的实验条件下,RS 23597-190也可用于体内进一步表征5-HT4受体功能。

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