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海水鳗鱼中的心钠素渗透调节作用的综合研究方法。

Integrative approach to osmoregulatory action of atrial natriuretic peptide in seawater eels.

作者信息

Tsukada Takehiro, Takei Yoshio

机构信息

Ocean Research Institute, The University of Tokyo, Tokyo 164-8639, Japan.

出版信息

Gen Comp Endocrinol. 2006 May 15;147(1):31-8. doi: 10.1016/j.ygcen.2005.09.009. Epub 2005 Oct 21.

Abstract

Atrial natriuretic peptide (ANP) reduces plasma Na+ concentration and promotes seawater (SW) adaptation in SW eels. However, little is known about the mechanisms for the hyponatremic effect of ANP. In order to evaluate the role of ANP in the whole-body Na+ homeostasis of marine teleost, we reviewed previous in vivo experiments using exogenously administered ANP and present additional experiments to assess the role of endogenous ANP in Na+ homeostasis in conscious SW eels. The Na+ influx and efflux rate across the body surfaces including the gills measured with isotopic 22Na were not altered by the hyponatremic dose (5 pmol kg-1 min-1) of ANP infusion in SW eels. ANP infusion also had no effect on renal Na+ excretion in SW eels. In contrast, ANP strongly inhibited drinking, and the inhibition was quantitatively correlated with the hyponatremic effect of ANP. Further, intestinal absorption of Na+ was inhibited by ANP as examined in situ using intestinal sac in conscious SW eels. The combined inhibitory actions of ANP on drinking and intestinal absorption were sufficient to explain the decrease in plasma Na+ concentration. In addition, removal of endogenous circulating ANP by immunoneutralization increased plasma Na+ concentration with a concomitant increase in drinking rate in SW eels. These results strongly suggest that endogenous ANP is involved in the hyponatremic regulation through actions on drinking, and probably on intestine, in SW eels.

摘要

心房利钠肽(ANP)可降低血浆钠离子浓度,并促进海鳝对海水的适应。然而,关于ANP产生低钠血症效应的机制,我们知之甚少。为了评估ANP在硬骨鱼全身钠离子稳态中的作用,我们回顾了以往使用外源性给予ANP的体内实验,并开展了额外实验,以评估内源性ANP在清醒海鳝钠离子稳态中的作用。在海鳝中,用同位素22Na测量的包括鳃在内的体表钠离子流入和流出速率,并未因低钠血症剂量(5 pmol kg-1 min-1)的ANP输注而改变。ANP输注对海鳝的肾脏排钠也没有影响。相反,ANP强烈抑制饮水,且这种抑制作用在数量上与ANP的低钠血症效应相关。此外,在清醒海鳝中,使用肠囊原位检测发现,ANP抑制了肠道对钠离子的吸收。ANP对饮水和肠道吸收的联合抑制作用足以解释血浆钠离子浓度的降低。此外,通过免疫中和去除内源性循环ANP可提高海鳝的血浆钠离子浓度,同时饮水速率也随之增加。这些结果有力地表明,内源性ANP通过作用于饮水,可能还作用于肠道,参与了海鳝的低钠血症调节。

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