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BIBP3226抑制神经肽Y和胰多肽增强的神经源性血管收缩。

BIBP3226 inhibits neuropeptide Y and pancreatic polypeptide potentiated neurogenic vasoconstriction.

作者信息

Barrios V E, Nelson A G, Toombs C F

机构信息

Department of Pharmacology, Amgen Inc., Thousand Oaks, California 91320, USA.

出版信息

Life Sci. 1998;62(6):525-32. doi: 10.1016/s0024-3205(97)01148-x.

Abstract

Neuropeptide Y (NPY) potentiates the contractile response of the rat caudal artery to adrenergic nerve stimulation in-vitro. The NPY Y1 selective antagonist BIBP3226 ((R)-N2-(diphenylacetyl)-N-[(4-hydroxyphenyl)methyl]-argininami de), inhibited the vascular effects of NPY in rat caudal artery preparations in-vitro (IC50 =126 nM). BIBP3226 also inhibited the effects of the selective Y1 agonist [Leu31,Pro34]NPY and completely abolished the effects of avian pancreatic polypeptide that was shown to be capable of potentiating neurogenic vasoconstriction in this preparation. These effects were reversible and are most likely mediated by the Y1 receptor subtype since we failed to observe any functional evidence of a Y2 receptor subtype in rat caudal artery. The caudal artery provides a useful functional assay for pharmacological analysis of NPY and NPY antagonists.

摘要

神经肽Y(NPY)可增强大鼠尾动脉对体外肾上腺素能神经刺激的收缩反应。NPY Y1选择性拮抗剂BIBP3226((R)-N2-(二苯基乙酰基)-N-[(4-羟基苯基)甲基]-精氨酰胺)在体外大鼠尾动脉制剂中抑制了NPY的血管效应(IC50 = 126 nM)。BIBP3226还抑制了选择性Y1激动剂[Leu31,Pro34]NPY的效应,并完全消除了禽胰多肽的效应,该多肽在本制剂中显示能够增强神经源性血管收缩。这些效应是可逆的,最有可能由Y1受体亚型介导,因为我们未能在大鼠尾动脉中观察到Y2受体亚型的任何功能证据。尾动脉为NPY和NPY拮抗剂的药理学分析提供了有用的功能检测方法。

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