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对氯汞苯甲酸盐对蛙膀胱水及小分子溶质通透性的影响。

Effects of PCMBS on the water and small solute permeabilities in frog urinary bladder.

作者信息

Ibarra C, Ripoche P, Parisi M, Bourguet J

机构信息

Départment de Biologie, Centre d'Etudes Nucléaires de Saclay, Gif-Sur-Yvette, France.

出版信息

J Membr Biol. 1990 Jun;116(1):57-64. doi: 10.1007/BF01871672.

Abstract

UNLABELLED

It has been reported that PCMBS (p-chloromercuribenzene sulfonate) blocks the water permeability of red cells and of the tubular kidney membranes. In this study we compare the effects of this mercurial compound on the permeability of water and other small solutes in the frog urinary bladder. We observed that: (i) 5 mM PCMBS applied at pH 5.0 to the mucosal side inhibited the net and unidirectional water fluxes induced by oxytocin without changing the delta Pf/delta Pd ratio. (ii) The oxytocin-induced urea and Na+ influxes were also inhibited by PCMBS. (iii) The unidirectional Cl- movement was first reduced and then increased during the course of PCMBS treatment. (iv) The short-circuit measured at low mucosal Na+ concentration (10 mM), diminished continuously, whereas the transepithelial resistance first increased and then diminished. (v) Mannitol, raffinose, alpha-methyl-glucose, antipyrine, caffeine and Rb+ movements were not changed significantly during the first 26 min of the water permeability inhibition.

IN CONCLUSION

(i) The ADH-sensitive water, urea and Na+ transport systems were inhibited by PCMBS, (ii) PCMBS did not induce a nonspecific and general effect on the permeability of the membrane during the development of the water permeability inhibition, and (iii) in terms of water channels, the inhibition of water transport with the maintenance of a high Pf/Pd ratio suggests that PCMBS closes the water channels in an all or none manner, reducing their operative number in the apical border of frog bladder.

摘要

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据报道,对氯汞苯磺酸盐(PCMBS)可阻断红细胞和肾小管膜的水通透性。在本研究中,我们比较了这种汞化合物对青蛙膀胱水及其他小溶质通透性的影响。我们观察到:(i)在pH 5.0时,将5 mM PCMBS施加于黏膜侧,可抑制催产素诱导的净水通量和单向水通量,而不改变Pf/Pd比值。(ii)PCMBS也抑制催产素诱导的尿素和Na⁺内流。(iii)在PCMBS处理过程中,单向Cl⁻移动先降低后增加。(iv)在低黏膜Na⁺浓度(10 mM)下测得的短路电流持续减小,而跨上皮电阻先增加后减小。(v)在水通透性抑制的最初26分钟内,甘露醇、棉子糖、α-甲基葡萄糖、安替比林、咖啡因和Rb⁺的移动没有明显变化。

结论

(i)PCMBS抑制了抗利尿激素敏感的水、尿素和Na⁺转运系统,(ii)在水通透性抑制过程中,PCMBS对膜通透性未产生非特异性的普遍影响,(iii)就水通道而言,在维持高Pf/Pd比值的情况下抑制水转运表明,PCMBS以全或无的方式关闭水通道,减少其在青蛙膀胱顶端边界的有效数量。

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