[4-甲基己甲醇刺激节后纤维引起的大鼠离体胃的收缩]。

Acta vitaminologica et enzymologica Pub Date : 1985-01-01
R Aragno, V Bettini, G Bruni, F Mayellaro, P Ton
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引用次数: 0

摘要

已知生物类黄酮作为Ca++对不同胆碱能神经末梢的递质释放有促进作用。因此,研究单独测试的4-甲基维甲素或与抗坏血酸相关的4-甲基维甲素,以及钙离子浓度增加对在存在或不存在六甲铵的情况下通过电跨壁刺激实现的离体大鼠胃反应的影响似乎很有趣。4-甲基维甲素和抗坏血酸都增加了对跨壁电刺激的反应。如果该物质与抗坏血酸一起使用,4-甲基维甲素的效果会特别强。有抗坏血酸或不含抗坏血酸的4-甲基维甲素的增强作用,在六甲铵的存在下相对较小。基于4-甲基维甲素的作用与Ca++浓度升高所决定的作用有明显的相似性,可以推测生物类黄酮促进了神经节前和神经节后神经末梢的递质释放。本文报道的结果证实了先前在不同胆碱能神经末梢上完成的其他观察结果,并可以支持4-甲基维甲素增加Ca++通过生物膜运输的假设。
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[Contraction of the isolated stomach of the rat as a result of stimulation of postganglionic fibers in the presence of 4-methylesculetol].

It is known that the bioflavonoids as the Ca++ have an enhancing effect on the transmitter release in different cholinergic nerve-endings. For this reason, it is seemed interesting to study the influence of the separately tested 4-methylesculetin or associated with the ascorbic acid and comparatively the Ca++ concentration increase on the isolated rat stomach response by electrical transmural stimulation achieved in presence or absence of hexamethonium. Both the 4-methylesculetin and the ascorbic acid have always increased the response of the preparation submitted to electrical transmural stimulation. The 4-methylesculetin effect resulted particularly strong if the substance was employed with the ascorbic acid. The enhancing effect of the 4-methylesculetin, obtained with or without the ascorbic acid, is resulted comparatively lesser in presence of hexamethonium. On the basis of the evident analogy between the 4-methylesculetin effects and the ones determined by the increased Ca++ concentration, it can be supposed that the bioflavonoid facilitates the transmitter release in the pre- and postganglionic nerve-endings. The results here reported, confirm other previous observations accomplished on different cholinergic nerve-endings and could substain the hypothesis according to which the 4-methylesculetin increase the Ca++ transport through the biological membranes.

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Developmental pattern of the hepatic DNA, RNA and protein in relation to maternal vitamin A status in rats. Vitamin A: a key nutrient for the maintenance of epithelial differentiation. [Changes in acetylcholine contractions induced by carnitine in coronary vessels isolated "in vitro"]. [Contraction of the isolated stomach of the rat as a result of stimulation of postganglionic fibers in the presence of 4-methylesculetol]. Effect of reductones on cyclic 3', 5'-adenosine monophosphate phosphodiesterase.
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