首页> 外文期刊>The Journal of Physiology >17beta-oestradiol acutely regulates Cl- secretion in rat distal colonic epithelium.
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17beta-oestradiol acutely regulates Cl- secretion in rat distal colonic epithelium.

机译:17β-雌二醇可急性调节大鼠远端结肠上皮中的Cl-分泌。

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In this study we used the short circuit current (ISC) technique to measure the non-genomic effects of the female sex steroid 17beta-oestradiol (E2) on electrogenic transepithelial ion transport in rat distal colonic epithelium. Basal ISC was largely composed of a transepithelial Cl- secretory component with minimal electrogenic Na+ movement. E2 (1-100 nM) caused a significant decrease in basal ISC after 15 min. In addition, pre-treating colonic epithelial tissues with E2 (0.1-100 nM) for 10 min significantly reduced forskolin (20 microM)-induced Cl- secretion. E2 also down-regulated Cl- secretion which was pre-stimulated by forskolin. Cl- secretory responses to the Ca2+-dependent secretagogue carbachol (10 microM) were also significantly reduced in the presence of E2 (10- 100 nM). However, E2 had no effect on amiloride-sensitive Na+ absorption. The rapid anti-secretory effect of E2 was abolished in the presence of the intracellular Ca2+ chelator BAPTA (50 microM) or the protein kinase C (PKC) inhibitor chelerythrine chloride (1 microM). However, in the presence of the nuclear oestrogen receptor antagonist tamoxifen (10 microM), E2 still produced an inhibition of Cl- secretion. Testosterone, progesterone and 17alpha-oestradiol had no significant effect on colonic Cl- secretion. Also, E2 (100 nM) did not alter Cl- secretion in colonic epithelia isolated from male rats. We conclude that E2 inhibits colonic Cl- secretion via a non-genomic pathway that involves intracellular Ca2+ and PKC. It is possible that this gender-specific mechanism contributes to the salt and water retention associated with high E2 states.
机译:在这项研究中,我们使用短路电流(ISC)技术来测量雌性类固醇17β-雌二醇(E2)对大鼠远端结肠上皮中电跨膜上皮离子运输的非基因组影响。基底ISC主要由跨上皮的Cl分泌成分组成,且具有最小的电生成Na +运动。 15分钟后,E2(1-100 nM)导致基础ISC明显下降。此外,用E2(0.1-100 nM)预处理结肠上皮组织10分钟可显着减少福司柯林(20 microM)诱导的Cl分泌。 E2还下调了福司柯林预先刺激的Cl-分泌。在存在E2(10-100 nM)的情况下,对Ca2 +依赖性促分泌剂碳酰胆碱(10 microM)的Cl分泌反应也显着降低。但是,E2对阿米洛利敏感的Na +吸收没有影响。在细胞内Ca2 +螯合剂BAPTA(50 microM)或蛋白激酶C(PKC)抑制剂白屈菜红碱氯化物(1 microM)的存在下,E2的快速抗分泌作用被消除。但是,在存在核雌激素受体拮抗剂他莫昔芬(10 microM)的情况下,E2仍然会抑制Cl的分泌。睾丸激素,孕酮和17α-雌二醇对结肠Cl-分泌没有显着影响。同样,E2(100 nM)不会改变从雄性大鼠中分离出的结肠上皮中的C1分泌。我们得出的结论是,E2通过涉及细胞内Ca2 +和PKC的非基因组途径抑制结肠Cl-分泌。这种性别特定的机制可能有助于与高E2状态相关的盐和水保留。

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