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细胞外钙在交感神经刺激、去甲肾上腺素和前列腺素F2α对灌注大鼠肝脏的代谢及血流动力学作用中的角色。硝苯地平和维拉帕米的差异性抑制作用。

Role of extracellular calcium in the metabolic and hemodynamic actions of sympathetic nerve stimulation, noradrenaline and prostaglandin F2 alpha in perfused rat liver. Differential inhibition by nifedipine and verapamil.

作者信息

Athari A, Jungermann K

机构信息

Fachbereich Medizin, Georg-August-Universität, Göttingen, Germany.

出版信息

Biochem Int. 1990;20(1):13-23.

PMID:2328018
Abstract

In perfused rat liver hepatic nerve stimulation (10 Hz, 2 ms) caused an increase in glucose and lactate output, a decrease in flow and an overflow of noradrenaline into the hepatic vein. Noradrenaline (1 microM) (NA) and prostaglandin F2 alpha (5 microM) (PGF2 alpha), which are implicated as mediators of nerve action, elicited similar effects. 1) All actions of nerve stimulation and the hemodynamic but not the metabolic effects of noradrenaline and PGF2 alpha were largely dependent on extracellular calcium. 2) The dihydropyridine type calcium antagonist nifedipine (5 microM) inhibited the hemodynamic but not the metabolic actions of nerve stimulation, NA and PGF2 alpha, while the phenylalkylamine type calcium antagonist verapamil (5 microM) had no effect. These findings allow the following conclusions: Calcium influx into I nerve endings, necessary for the release of neurotransmitter, II parenchymal cells, for the display of metabolic effects induced by nerve stimulation, and III the actions of NA and PGF2 alpha, do not appear to be mediated by the normal affinity nifedipine- or the verapamil-sensitive channels. Calcium influx into vascular smooth muscle and/or endothelial cells for the display of hemodynamic action induced by nerve stimulation and the NA and PGF2 alpha effects, appear to occur through nifedipine-sensitive but verapamil-insensitive channels.

摘要

在灌注大鼠肝脏中,刺激肝神经(10Hz,2ms)会导致葡萄糖和乳酸输出增加、血流量减少以及去甲肾上腺素溢入肝静脉。去甲肾上腺素(1μM)(NA)和前列腺素F2α(5μM)(PGF2α)被认为是神经作用的介质,它们引发了类似的效应。1)神经刺激的所有作用以及去甲肾上腺素和PGF2α的血流动力学效应而非代谢效应在很大程度上依赖于细胞外钙。2)二氢吡啶类钙拮抗剂硝苯地平(5μM)抑制神经刺激、NA和PGF2α的血流动力学效应而非代谢作用,而苯烷基胺类钙拮抗剂维拉帕米(5μM)则无作用。这些发现可得出以下结论:钙流入I神经末梢,这是神经递质释放所必需的;II实质细胞,这是神经刺激诱导的代谢效应所必需的;以及III NA和PGF2α的作用,似乎不是由正常亲和力的硝苯地平或维拉帕米敏感通道介导的。钙流入血管平滑肌和/或内皮细胞以表现出神经刺激以及NA和PGF2α效应所诱导的血流动力学作用,似乎是通过硝苯地平敏感但维拉帕米不敏感的通道发生的。

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