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福斯高林模拟血管加压素在海蟾蜍膀胱中的水渗透性作用。

Forskolin mimics the hydrosmotic action of vasopressin in the urinary bladder of toads Bufo marinus.

作者信息

De Sousa R C, Grosso A

出版信息

J Physiol. 1985 Aug;365:307-18. doi: 10.1113/jphysiol.1985.sp015774.

Abstract

Net water flow JW was measured across the urinary bladder of toads Bufo marinus and averaged over periods of 1 min by means of a volumetric, automatic technique. The diterpene forskolin, an activator of adenylate cyclase bypassing the hormonal receptor subunit, induced a rapid, reversible, dose-dependent increase in osmotic water permeability, Pf, very similar to that induced by vasopressin. At 1.1 microM, forskolin induced a half-maximal response. At 5 microM forskolin caused a near maximal response and Pf increased from 1.66 +/- 0.15 to 66.6 +/- 2.99 microns s-1. In bladders pre-exposed to 5 microM-forskolin, further significant increases in Pf were obtained by their subsequent exposure to vasopressin, cyclic AMP, theophylline or serosal hypertonicity. The similarity of the forskolin and vasopressin actions was further demonstrated by the finding that substances causing enhancement (quercetin) or inhibition (trifluoperazine, vanadate, silver, cobalt, manganese and Ca2+-free Ringer solution) of the vasopressin response, induced parallel changes in the forskolin response. Three agents, however, induced dissimilar effects on vasopressin and forskolin: high K+ potentiated vasopressin but inhibited forskolin; methohexital and diamide inhibited vasopressin but had no effect on forskolin. The forskolin-induced hydrosmotic response can be viewed as a new criterion for ascertaining the messenger role of cycle AMP in the the hydrosmotic effect of vasopressin.

摘要

采用容量自动技术测量了海蟾蜍膀胱的净水流JW,并在1分钟的时间段内求平均值。二萜类化合物福斯可林是一种绕过激素受体亚基的腺苷酸环化酶激活剂,它能引起渗透水通透性Pf迅速、可逆、剂量依赖性增加,这与血管加压素诱导的情况非常相似。在1.1微摩尔浓度下,福斯可林诱导出半数最大反应。在5微摩尔浓度时,福斯可林引起接近最大的反应,Pf从1.66±0.15增加到66.6±2.99微米/秒。在预先暴露于5微摩尔福斯可林的膀胱中,随后再暴露于血管加压素、环磷酸腺苷、茶碱或浆膜高渗状态时,Pf会进一步显著增加。福斯可林和血管加压素作用的相似性还通过以下发现得到进一步证明:引起血管加压素反应增强(槲皮素)或抑制(三氟拉嗪、钒酸盐、银、钴、锰和无钙林格液)的物质,会在福斯可林反应中引起平行变化。然而,有三种物质对血管加压素和福斯可林产生不同的影响:高钾增强血管加压素但抑制福斯可林;美索比妥和二酰胺抑制血管加压素但对福斯可林无影响。福斯可林诱导的水渗透性反应可被视为确定环磷酸腺苷在血管加压素水渗透性效应中信使作用的一个新标准。

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Experientia. 1981 Jul 15;37(7):742-4. doi: 10.1007/BF01967956.

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