首页> 外文期刊>European Journal of Pharmacology: An International Journal >The novel peripherally active cannabinoid type 1 and serotonin type 3 receptor agonist AM9405 inhibits gastrointestinal motility and reduces abdominal pain in mouse models mimicking irritable bowel syndrome
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The novel peripherally active cannabinoid type 1 and serotonin type 3 receptor agonist AM9405 inhibits gastrointestinal motility and reduces abdominal pain in mouse models mimicking irritable bowel syndrome

机译:新型外周活性大麻素1型和血清素型3受体激动剂AM9405抑制胃肠运动,减少模拟肠易激综合征的小鼠模型中的腹痛

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摘要

The endocannabinoid system (ECS) plays a crucial role in numerous physiological processes in the central and peripheral nervous systems. In the gastrointestinal (GI) tract, selective cannabinoid (CB) receptor agonists exert potent inhibitory actions on motility and pain signalling.In the present study, we used mouse models of diarrhea, hypermotility, and abdominal pain to examine whether a novel synthetic CB1receptor agonist AM9405 [(2-(2,6-dihydroxy-4-(2-methyloctan-2-yl)phenyl)?1,3-dimethyl-1H-benzo[d]imidazol-3-ium bromide); also known as GAT379] exhibits effects of potential therapeutic relevance.AM9405 significantly slowed mouse intestinal motility in physiological conditions. Moreover, AM9405 reversed hypermotility and reduced pain in mouse models mimicking symptoms of functional GI disorders, such as stress-induced diarrhea and writhing test. Interestingly, some of the effects of AM9405 were blocked by a 5-HT3antagonist suggesting interaction with 5-HT3receptors.In our study we show that combining CB1agonism with 5-HT3agonism may alter physiological functions and experimental pathophysiologies in a manner that make such compounds promising drugs for the future treatment of functional GI disorders.
机译:Endocannaboid系统(ECS)在中央和周围神经系统中的许多生理过程中起着至关重要的作用。在胃肠(GI)道,选择性大麻素(CB)受体激动剂施加蠕动和疼痛signalling.In本研究中有效的抑制动作,我们使用腹泻,运动过强,和腹痛的小鼠模型中检查是否一个新的合成CB1receptor激动剂AM9405 [(2-(2,6-二羟基-4-(2-甲基辛-2-基)苯基)-1,3-二甲基-1H-苯并[d]咪唑-3-鎓溴化物);也称为GAT379]表现出潜在治疗相关性的影响。9405在生理条件下显着减缓了小鼠肠道活力。此外,AM9405逆转高温性和降低小鼠模型的疼痛,模拟函数GI疾病的症状,例如应激引起的腹泻和扭曲试验。有趣的是,AM9405的一些效果被5-ht3.245的暗示与5-ht3receptors相互作用堵塞。我们的研究表明,将CB1代理与5-HT3A眼的组合可以以制备此类化合物的方式改变生理功能和实验病理物理学对于未来的功能性GI疾病的治疗方法。

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