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大鼠胃底平滑肌上的兴奋性神经降压素受体:对胃动力的潜在影响。

Excitatory neurotensin receptors on the smooth muscle of the rat fundus: possible implications in gastric motility.

作者信息

Huidobro-Toro J P, Kullak A

出版信息

Br J Pharmacol. 1985 Apr;84(4):897-910. doi: 10.1111/j.1476-5381.1985.tb17384.x.

Abstract

Picomolar concentrations of neurotensin caused concentration-dependent contractions of the longitudinal musculature of the fundus of the rat stomach. The EC50 of neurotensin was approximately 1.5 nM. On a molar basis neurotensin was about 5-10 times more potent than 5-hydroxytryptamine (5-HT) and approximately 80 times as active as acetylcholine in producing similar contractions. Studies with structurally related peptides indicated that whereas the carboxy terminal portion of neurotensin was essential for biological activity, a substantial part of its amino terminus end could be removed without affecting its potency. The EC50 for the neurotensin fragment 8-13 was identical to that of neurotensin, however its 1-8 or 1-11 fragments were completely inactive. Tetrodotoxin did not modify the potency of neurotensin or structurally related analogues suggesting that the neurotensin receptor is probably located on the smooth muscle membrane. In addition, the potency of neurotensin in contracting the fundus was not modified by pretreatment with atropine, methysergide or diphenhydramine. Fade to the contractile response of neurotensin was followed by the development of tachyphylaxis; desensitization was concentration-dependent and characterized by a shift in the agonist concentration-response curve to the right and downwards. Desensitization with a priming concentration of neurotensin (approx. EC50) caused a substantial blockade of its excitability. There was cross-desensitization between neurotensin and the contractile activity of neurotensin 8-13 or xenopsin, but not with angiotensin II, bradykinin, substance P, acetylcholine, 5-HT or histamine. Pretreatment of the fundus strip with verapamil 0.3-1 microM antagonized in a concentration-dependent fashion the neurotensin-induced contractions but not the muscular contractions caused by acetylcholine. It is concluded that neurotensin activates a specific excitatory receptor probably located on the cell membrane of the smooth muscles of the rat fundus. In addition, we suggest that this receptor is somehow related to a voltage-dependent calcium channel, sensitive to verapamil.

摘要

皮摩尔浓度的神经降压素可引起大鼠胃底部纵行肌组织浓度依赖性收缩。神经降压素的半数有效浓度(EC50)约为1.5纳摩尔。按摩尔计算,神经降压素的效力比5-羟色胺(5-HT)高约5至10倍,在产生类似收缩方面,其活性约为乙酰胆碱的80倍。对结构相关肽的研究表明,虽然神经降压素的羧基末端部分对生物活性至关重要,但其氨基末端的很大一部分可以去除而不影响其效力。神经降压素片段8 - 13的EC50与神经降压素相同,但其1 - 8或1 - 11片段完全无活性。河豚毒素不会改变神经降压素或结构相关类似物的效力,这表明神经降压素受体可能位于平滑肌膜上。此外,阿托品、麦角新碱或苯海拉明预处理不会改变神经降压素收缩胃底部的效力。神经降压素收缩反应的消退伴随着快速耐受性的发展;脱敏是浓度依赖性的,其特征是激动剂浓度-反应曲线向右下方移动。用神经降压素的引发浓度(约EC50)进行脱敏会导致其兴奋性的显著阻断。神经降压素与神经降压素8 - 13或异胰蛋白酶的收缩活性之间存在交叉脱敏,但与血管紧张素II、缓激肽、P物质、乙酰胆碱、5-HT或组胺不存在交叉脱敏。用0.3 - 1微摩尔的维拉帕米预处理胃底部条带以浓度依赖性方式拮抗神经降压素诱导的收缩,但不拮抗乙酰胆碱引起的肌肉收缩。结论是神经降压素激活了一个可能位于大鼠胃底部平滑肌细胞膜上的特异性兴奋性受体。此外,我们认为该受体在某种程度上与对维拉帕米敏感的电压依赖性钙通道有关。

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