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研究 1-位被焦谷氨酸取代的阿片啡肽和唾液啡肽及其类似物对小鼠回肠运动的影响。

Characterization of the effects of opiorphin and sialorphin and their analogs substituted in position 1 with pyroglutamic acid on motility in the mouse ileum.

机构信息

Department of Organic Chemistry, Faculty of Chemistry, University of Gdansk, Gdansk, Poland.

出版信息

J Pept Sci. 2013 Mar;19(3):166-72. doi: 10.1002/psc.2486. Epub 2013 Feb 4.

Abstract

Opiorphin and sialorphin are two recently discovered endogenous enkephalin-degrading enzyme inhibitors. Our aim was to characterize their effect on the mouse ileum motility and to investigate the role of glutamine in position 1. Opiorphin, sialorphin, and their analogs substituted in position 1 with pyroglutamic acid (pGlu) were synthesized by the solid-phase method using Fmoc chemistry. The effect of peptides on gastrointestinal (GI) motility was characterized using in vitro assays and in mouse model of upper GI transit. Opiorphin and sialorphin, but not their analogs, significantly increased electrical field-stimulated contractions in the mouse ileum in a δ-opioid receptor-dependent manner. Opiorphin, sialorphin, and their analogs did not influence the effect of [Met(5)]enkephalin on smooth muscle contractility in the mouse ileum in vitro. [Met(5)]enkephalin and sialorphin, but not opiorphin injected intravenously (1 mg/kg), significantly inhibited the upper GI transit. The intraperitoneal administration of peptides (3 mg/kg) did not change the mouse upper GI transit. In conclusion, this is the first study investigating the effect of opiorphin and sialorphin on the mouse ileum motility and demonstrating that glutamine in position 1 is crucial for their pharmacological action. Our results may be important for further structure-activity relationship studies on opiorphin and sialorphin and future development of potent clinical therapeutics aiming at the enkephalinergic system.

摘要

阿片啡肽和唾液啡肽是两种新发现的内源性脑啡肽降解酶抑制剂。我们的目的是研究它们对小鼠回肠运动的影响,并研究 1 号位谷氨酰胺的作用。阿片啡肽、唾液啡肽及其在 1 号位被焦谷氨酸(pGlu)取代的类似物通过固相法使用 Fmoc 化学合成。使用体外测定和小鼠上消化道转运模型来研究肽对胃肠道(GI)运动的影响。阿片啡肽和唾液啡肽,但不是它们的类似物,以 δ-阿片受体依赖性方式显著增加了电刺激引起的小鼠回肠收缩。阿片啡肽、唾液啡肽及其类似物不影响 [Met(5)]脑啡肽对体外小鼠回肠平滑肌收缩性的影响。[Met(5)]脑啡肽和唾液啡肽,但不是阿片啡肽,静脉注射(1 mg/kg)显著抑制了上消化道转运。肽的腹腔给药(3 mg/kg)不会改变小鼠上消化道转运。总之,这是第一项研究阿片啡肽和唾液啡肽对小鼠回肠运动影响的研究,并证明 1 号位的谷氨酰胺对其药理作用至关重要。我们的结果可能对阿片啡肽和唾液啡肽的进一步构效关系研究以及针对内啡肽能系统的有效临床治疗药物的未来发展具有重要意义。

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