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异丙肾上腺素通过释放生长抑素在喂食的狗中诱导活动前沿。

Isoproterenol induces activity fronts in fed dogs through somatostatin release.

作者信息

Summers R W, Flatt A, Yanda R J, Yamada T

出版信息

Gastroenterology. 1984 Nov;87(5):999-1003.

PMID:6148291
Abstract

We confirmed previous studies by others that intravenous somatostatin infusions (1.4 and 2.5 micrograms/kg X h) induced jejunal activity fronts in fed dogs. This finding, coupled with earlier demonstrations that somatostatin is released from the stomach and pancreas in vitro by isoproterenol, led us to investigate the possible role of somatostatin in mediating isoproterenol-induced activity fronts. Plasma somatostatin and motilin concentrations were determined after a meat-base meal, before and after isoproterenol infusions (0.5 micrograms/kg X min). Jejunal activity fronts were initiated in 15 of 17 experiments an average of 25 min after the start of the isoproterenol infusion. The concentration of motilin did not change, but somatostatin concentrations increased progressively beginning 15 min after starting the isoproterenol infusion. Thus, isoproterenol released somatostatin in vivo and this release was associated with jejunal activity fronts. The rise in plasma somatostatin concentration was similar to that obtained after somatostatin infusions, although in the latter experiments the activity fronts began soon after initiation of the somatostatin infusion. The results suggest that isoproterenol-induced activity fronts are mediated by somatostatin. We speculate that beta-adrenergic nerves may induce activity fronts through somatostatin release, possibly in situations such as extreme stress.

摘要

我们证实了他人先前的研究,即静脉输注生长抑素(1.4和2.5微克/千克×小时)可在喂食的狗中诱导空肠活动波峰。这一发现,再加上早期的研究表明异丙肾上腺素可在体外促使胃和胰腺释放生长抑素,促使我们研究生长抑素在介导异丙肾上腺素诱导的活动波峰中可能发挥的作用。在给予肉粉餐之后、输注异丙肾上腺素(0.5微克/千克×分钟)之前和之后,测定血浆生长抑素和胃动素浓度。在17个实验中的15个实验里,异丙肾上腺素输注开始后平均25分钟出现空肠活动波峰。胃动素浓度未发生变化,但从异丙肾上腺素输注开始15分钟后,生长抑素浓度逐渐升高。因此,异丙肾上腺素在体内释放生长抑素,且这种释放与空肠活动波峰相关。血浆生长抑素浓度的升高与生长抑素输注后所获得的升高相似,尽管在后者的实验中,活动波峰在生长抑素输注开始后不久就出现了。结果表明,异丙肾上腺素诱导的活动波峰是由生长抑素介导的。我们推测,β - 肾上腺素能神经可能通过释放生长抑素诱导活动波峰,可能是在诸如极端应激等情况下。

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