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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Changes in the electrophysiological parameters of the posterior intestine of Anguilla anguilla (Pisces) induced by oxytocin, urotensin II and aldosterone
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Changes in the electrophysiological parameters of the posterior intestine of Anguilla anguilla (Pisces) induced by oxytocin, urotensin II and aldosterone

机译:催产素,尿紧张素II和醛固酮诱导的安圭拉(双鱼)后肠电生理参数的变化

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In view of the importance of the intestine in the osmoregulation of freshwater fishes, we determined the effects of oxytocin, urotensin II (UII), and aldosterone added to the serosal side of the isolated posterior intestine of the freshwater-adapted teleost Anguilla anguilla on electrophysiological parameters. Oxytocin decreased the short-circuit current (SCC) and transepithelial potential difference (TPD) at concentrations of 1 and 10 mU/ml (to 50% and 42% of control values, respectively), but did not alter these parameters at a concentration of 0.1 mU/ml. UII reduced SCC and TPD at concentrations of 10 nM, 50 nM and 100 nM (to 85% of control values), but increased these parameters at the concentration of 500 nM (to 115% of control values). Aldosterone did not alter SCC or TPD at the concentrations tested (10 nM and 100 nM). Oxytocin may open Na+ channels in the apical membrane, allowing the flow of Na+ to the serosa, reducing SCC and TPD. Should this hypothesis be correct, oxytocin would be important for freshwater adaptation, since it would increase Na+ absorption. The reduction of SCC and TPD in the posterior intestine of A. anguilla induced by UII is evidence that this neurohormone is also important for freshwater adaptation in teleosts. Aldosterone did not show this effect probably due to the lack of receptors in this organ
机译:考虑到肠在淡水鱼渗透调节中的重要性,我们确定了催产素,尿紧张素II(UII)和醛固酮添加到淡水适应的硬骨安圭拉安圭拉分离后肠浆膜侧对电生理的影响参数。催产素在浓度为1和10 mU / ml时分别降低了短路电流(SCC)和跨上皮电位差(TPD)(分别为对照值的50%和42%),但在浓度为时未改变这些参数。 0.1毫升/毫升UII在10 nM,50 nM和100 nM的浓度下降低了SCC和TPD(达到对照值的85%),但在500 nM的浓度下提高了这些参数(达到对照值的115%)。在测试浓度(10 nM和100 nM)下,醛固酮不会改变SCC或TPD。催产素可能会打开顶膜中的Na +通道,使Na +流入浆膜,从而降低SCC和TPD。如果这个假设是正确的,催产素对于适应淡水将很重要,因为它会增加Na +的吸收。 UII诱导的安哥拉按蚊后肠中SCC和TPD的减少证明,这种神经激素对于硬骨鱼的淡水适应也很重要。醛固酮未显示出这种作用,可能是因为该器官缺乏受体

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