Crocker A D, Willavoys S P
J Physiol. 1975 Dec;253(2):401-10. doi: 10.1113/jphysiol.1975.sp011196.
Mucosal sodium and water transfer were measured in everted sacs of rat jejunum. 2. Bradykinin (7.86 X 10(-12)M), when present in both mucosal and serosal solutions, produced a biphasic effect on mucosal sodium and water transfer. When basal transfer was low a stimulation was observed whereas an inhibition of transfer was observed when basal transfer was high. Bradykinin at concentrations of 7-86 X 10(-11) and 7-86 X 10(-13) M produced qualitatively similar effects. 3. Inhibition of transfer was observed whether bradykinin was present in the mucosal, serosal or both solutions. Stimulation of transfer was observed only when bradykinin was present in the serosal solution. 4. Theophylline (1 mM), alone inhibited water transfer at high and intermediate levels of basal transfer, and significantly potentiated the inhibitory effect of bradykinin (7-86 X 10(-12)M) on water transfer at intermediate levels of control transfer. 5. Cyclic AMP (1 mM) inhibited water transfer when basal transfer was high. Dibutyryl cyclic AMP (1 mM) inhibited water transfer at all levels of basal transfer. Dibutyryl cyclic AMP (1 mM) and bradykinin (7-86 X 10(-12)M) together produced a significantly greater inhibition of water transfer than either agent alone, at intermediate basal transfer. 6. It was observed that the action of bradykinin upon sodium and water transfer consists of two different and opposing effects. It is possible that the inhibitory effect of bradykinin upon water transfer is related to increased cyclic AMP activity.
在大鼠空肠外翻囊中测量黏膜钠和水的转运。2. 当缓激肽(7.86×10⁻¹²M)同时存在于黏膜和浆膜溶液中时,对黏膜钠和水的转运产生双相作用。当基础转运较低时观察到刺激作用,而当基础转运较高时观察到转运抑制作用。浓度为7 - 86×10⁻¹¹和7 - 86×10⁻¹³M的缓激肽产生定性相似的作用。3. 无论缓激肽存在于黏膜溶液、浆膜溶液还是两者中,均观察到转运抑制。仅当缓激肽存在于浆膜溶液中时观察到转运刺激。4. 茶碱(1 mM)单独在基础转运的高和中等水平时抑制水的转运,并在对照转运的中等水平时显著增强缓激肽(7 - 86×10⁻¹²M)对水转运的抑制作用。5. 环磷酸腺苷(1 mM)在基础转运较高时抑制水的转运。二丁酰环磷酸腺苷(1 mM)在基础转运的所有水平时均抑制水的转运。在基础转运中等水平时,二丁酰环磷酸腺苷(1 mM)和缓激肽(7 - 86×10⁻¹²M)共同产生的水转运抑制作用比单独使用任何一种药物都显著更强。6. 观察到缓激肽对钠和水转运的作用由两种不同且相反的效应组成。缓激肽对水转运的抑制作用可能与环磷酸腺苷活性增加有关。