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氟化物对蟾蜍膀胱抗利尿激素水渗透反应的抑制作用。

Fluoride inhibition of the hydro-osmotic response of the toad urinary bladder to antidiuretic hormone.

作者信息

Yorio T, Sinclair R, Henry S

出版信息

J Pharmacol Exp Ther. 1981 Nov;219(2):459-63.

PMID:6270309
Abstract

The hydro-osmotic response of the toad bladder to antidiuretic hormone and cyclic AMP was inhibited by the methoxyflurane metabolite, fluoride. The osmotic transfer of water in the absence of hormone was unaffected by fluoride as was the hydroosmotic response due to hypertonicity of the serosal bathing media. Osmotic water movements across N-ethylmaleimide-"fixed" vasopressin or cyclic AMP-stimulated bladders were likewise unchanged by fluoride, suggesting that fluoride is exerting an action subsequent to the endogenous formation of cyclic AMP but before the final effector mechanism. Fluoride increased intracellular cyclic AMP concentrations even in the presence of added hormone. Fluoride suppressed calmodulin activity and prevented its activation of phosphodiesterase. Fluoride had no effect on oxygen consumption of toad urinary bladder cells but reduced lactate formation and anerobic metabolism. This decrease in the glycolytic energy source did not contribute to the inhibition of the hormonal response since 2-deoxyglucose was without effect on hormonal mediated osmotic-water flow. It is postulated that the fluoride-induced polyuria after methoxyflurane anesthesia may be due in part to the ability of fluoride to interfere with calcium and calmodulin-initiated processes (other than phosphodiesterase activity) that may occur in the stimulus-reabsorption coupling response of antidiuretic hormone.

摘要

甲氧氟烷代谢产物氟化物可抑制蟾蜍膀胱对抗利尿激素和环磷酸腺苷(cAMP)的水渗透反应。在无激素情况下,水的渗透转运不受氟化物影响,浆膜浴液高渗引起的水渗透反应也不受其影响。氟化物同样不会改变经N - 乙基马来酰亚胺“固定”的加压素或cAMP刺激的膀胱的渗透水运动,这表明氟化物的作用发生在cAMP内源性形成之后,但在最终效应机制之前。即使在添加激素的情况下,氟化物也会增加细胞内cAMP浓度。氟化物会抑制钙调蛋白活性,并阻止其激活磷酸二酯酶。氟化物对蟾蜍膀胱细胞的耗氧量没有影响,但会减少乳酸生成和无氧代谢。糖酵解能量来源的这种减少对激素反应的抑制没有作用,因为2 - 脱氧葡萄糖对激素介导的渗透水流没有影响。据推测,甲氧氟烷麻醉后氟化物诱导的多尿可能部分归因于氟化物干扰钙和钙调蛋白启动的过程(磷酸二酯酶活性除外)的能力,这些过程可能发生在抗利尿激素的刺激 - 重吸收偶联反应中。

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