Dopamine and ghrelin receptor co‐expression and interaction in the spinal defecation centers

生长素 排便 内分泌学 内科学 多巴胺 兴奋剂 多巴胺受体D2 多巴胺受体D3 喹吡罗 医学 受体
作者
John B. Furness,Ruslan V. Pustovit,Andrew J. Syder,Mitchell Ringuet,Eun Ji Yoo,Andrea Fanjul,Jill Wykosky,Linda J. Fothergill,Emily A. Whitfield,Sebastian G. B. Furness
出处
期刊:Neurogastroenterology and Motility [Wiley]
卷期号:33 (5): e14051-e14051 被引量:17
标识
DOI:10.1111/nmo.14051
摘要

Abstract Background Dopamine receptor 2 (DRD2) and ghrelin receptor (GHSR1a) agonists both stimulate defecation by actions at the lumbosacral defecation center. Dopamine is in nerve terminals surrounding autonomic neurons of the defecation center, whereas ghrelin is not present in the spinal cord. Dopamine at D2 receptors generally inhibits neurons, but at the defecation center, its effect is excitatory. Methods In vivo recording of defecation and colorectal propulsion was used to investigate interaction between DRD2 and GHSR1a. Localization studies were used to determine sites of receptor expression in rat and human spinal cord. Key Results Dopamine, and the DRD2 agonist, quinpirole, directly applied to the lumbosacral cord, caused defecation. The effect of intrathecal dopamine was inhibited by the GHSR1a antagonist, YIL781, given systemically, but YIL781 was not an antagonist at DRD2. The DRD2 agonist, pramipexole, administered systemically caused colorectal propulsion that was prevented when the pelvic nerves were cut. Drd2 and Ghsr were expressed together in autonomic preganglionic neurons at the level of the defecation centers in rat and human. Behaviorally induced defecation (caused by water avoidance stress) was reduced by the DRD2 antagonist, sulpiride. We had previously shown it is reduced by YIL781. Conclusions and Inferences Our observations imply that dopamine is a transmitter of the defecation pathways whose actions are exerted through interacting dopamine (D2) and ghrelin receptors on lumbosacral autonomic neurons that project to the colorectum. The results explain the excitation by dopamine agonists and the conservation of GHSR1a in the absence of ghrelin.
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