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Gossypol affects ion transport in the isolated intestine of the seawater adapted eel, Anguilla anguilla

机译:棉酚影响海水适应鳗鳗离体肠道中的离子迁移

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Cottonseed (Gossypium sp.) meals are protein rich and inexpensive, but the presence of the polyphenolic dialdehyde, gossypol, is responsible of many toxic effects in animals including fishes. Recently an effect on the transepithelial ion transport in rat colon has been demonstrated. In this study we investigated the effect of gossypol on the transepithelial electrical parameters of the isolated intestine of seawater adapted eel, Anguilla anguilla, by employing a Ussing chamber technique. We showed that the addition of gossypol to the perfusion media reduced short circuit current (I-sc), a measure of Cl- active absorption in this tissue, and increased tissue conductance (g(t)). The observation that the effect of gossypol on both I-sc and g(t) was modified by the pretreatment with TFP, a calmodulin inhibitor, suggests that the substance acts via a Ca2+ calmodulin pathway and excludes the possibility that the observed effects were due to a cytotoxic action. In addition, experiments performed in the presence of verapamil suggest that the polyphenolic pigment increases Ca2+ influx. It is likely that gossypol stimulates a basolateral quinine sensitive K+ conductance producing a K+ flux in absorptive direction that explains the reduction of l,c. In addition dilution potential experiments showed that the polyphenolic aldehyde increases the anion conductance of the paracellular pathway. In conclusion Off study suggests that gossypol alters ion transport in eel intestine by acting on both transcellular and paracellular pathways. Since the intestine is an important organ for maintaining the water and ion balance in seawater adapted fish, it is conceivable that gossypol could impair the ability of the animals to adapt to the environment. (C) 2008 Elsevier Inc. All rights reserved.
机译:棉籽粕(蛋白质)富含蛋白质且价格便宜,但是多酚二醛(棉酚)的存在对动物(包括鱼类)产生许多毒性作用。最近,已证明对大鼠结肠中的上皮离子转运有作用。在这项研究中,我们研究了棉酚对海水适应鳗鳗(Anguilla anguilla)离体肠的上皮电学参数的影响,方法是采用Ussing chamber技术。我们表明,向灌注介质中添加棉酚可减少短路电流(I-sc),该组织中Cl活性吸收的量度,并提高组织电导(g(t))。棉酚对I-sc和g(t)的影响均通过用钙调蛋白抑制剂TFP预处理而得到了改变,这表明该物质通过Ca2 +钙调蛋白途径起作用,并且排除了观察到的影响是由于具有细胞毒性作用。另外,在维拉帕米存在下进行的实验表明,多酚颜料会增加Ca2 +的流入。棉酚很可能会刺激基底外侧奎宁敏感的K +电导,从而在吸收方向上产生K +通量,从而解释了l,c的降低。此外,稀释潜力实验表明,多酚醛可增加旁细胞途径的阴离子电导。结论结论Off研究表明棉酚通过作用于跨细胞和旁细胞途径改变了鳗鱼肠中的离子运输。由于肠道是维持海水适应鱼中水和离子平衡的重要器官,因此可以想象棉酚会削弱动物适应环境的能力。 (C)2008 Elsevier Inc.保留所有权利。

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