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正常大鼠胰腺A细胞和B细胞功能调节中的α-肾上腺素能系统

Alpha-adrenergic system in the modulation of pancreatic A and B cell function in normal rats.

作者信息

Filipponi P, Gregorio F, Ferrandina C, Nicoletti I, Mannarelli C, Pippi R, Santeusanio F

出版信息

Diabetes Res Clin Pract. 1986 Nov-Dec;2(6):325-36. doi: 10.1016/s0168-8227(86)80069-9.

Abstract

The role of the alpha-adrenergic system in the control of pancreatic A and B cell function was investigated in an isolated perfused rat pancreas model. Two experimental procedures were performed. In the first one we evaluated the effects of two distinct concentrations (10(-8) M and 10(-7) M) of five adrenergic substances, with varying degrees of potency on the alpha-adrenergic presynaptic receptor, on insulin (IRI) and glucagon (IRG) release induced by arginine (20 mM) plus glucose (6.6 mM). In the second procedure we studied the effects of the two alpha-blocking agents yohimbine (alpha 2-blocker) and prazosin (alpha 1-blocker) at 10(-7) M on epinephrine-modulated IRI and IRG response to the same combined metabolic stimulus. The inhibitory activity on basal and metabolically induced IRI secretion of the agonists was superimposable on their potency on the presynaptic alpha 2-adrenergic receptors. Similarly, the alpha 1-blocking agent prazosin was less effective than the alpha 2-blocker yohimbine in counteracting the inhibitory effects of epinephrine on basal and arginine plus glucose-induced insulin release. The alpha-cell activity was clearly stimulated by epinephrine, whereas selective alpha-adrenergic drugs showed no significant action on IRG secretion. Both alpha-blockers were ineffective on basal IRG release, while they had some potentiating effect on the epinephrine-induced glucagon release in basal state and during the metabolic stimulus, without a significant difference between the two drugs. We conclude that, at least in the isolated perfused rat pancreas, alpha 2-adrenergic receptors are involved in the inhibition of IRI release induced by catecholamines. On the contrary, the alpha-adrenergic system does not seem to play an essential role in the regulation of IRG secretion; the potentiation of the epinephrine-induced stimulation of A cell function by the alpha-adrenergic blockade could be accounted for by a greater availability of the catecholamine at the beta-receptor binding sites.

摘要

在离体灌注大鼠胰腺模型中研究了α-肾上腺素能系统在控制胰腺A细胞和B细胞功能中的作用。进行了两个实验步骤。在第一个步骤中,我们评估了五种肾上腺素能物质的两种不同浓度(10⁻⁸M和10⁻⁷M)对α-肾上腺素能突触前受体的不同效力,对由精氨酸(20mM)加葡萄糖(6.6mM)诱导的胰岛素(IRI)和胰高血糖素(IRG)释放的影响。在第二个步骤中,我们研究了两种α-阻断剂育亨宾(α₂-阻断剂)和哌唑嗪(α₁-阻断剂)在10⁻⁷M浓度下对肾上腺素调节的IRI和IRG对相同联合代谢刺激的反应的影响。激动剂对基础和代谢诱导的IRI分泌的抑制活性与其对突触前α₂-肾上腺素能受体的效力重叠。同样,α₁-阻断剂哌唑嗪在抵消肾上腺素对基础和精氨酸加葡萄糖诱导的胰岛素释放的抑制作用方面比α₂-阻断剂育亨宾效果差。肾上腺素明显刺激α细胞活性,而选择性α-肾上腺素能药物对IRG分泌无明显作用。两种α-阻断剂对基础IRG释放均无效,而它们在基础状态和代谢刺激期间对肾上腺素诱导的胰高血糖素释放有一定的增强作用,两种药物之间无显著差异。我们得出结论,至少在离体灌注大鼠胰腺中,α₂-肾上腺素能受体参与了儿茶酚胺诱导的IRI释放的抑制。相反,α-肾上腺素能系统似乎在IRG分泌的调节中不发挥重要作用;α-肾上腺素能阻断对肾上腺素诱导的A细胞功能刺激的增强作用可能是由于儿茶酚胺在β-受体结合位点有更高的可利用性。

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