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首页> 外文期刊>American Journal of Physiology >Concerted actions of IL-1beta inhibit Na+ absorption and stimulate anion secretion by IMCD cells.
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Concerted actions of IL-1beta inhibit Na+ absorption and stimulate anion secretion by IMCD cells.

机译:IL-1β的协同作用抑制了IMCD细胞的Na +吸收并刺激了阴离子的分泌。

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Increasing evidence indicates that factors other than adrenocorticoid hormones can influence long-term regulation of Na+ transport by inner medullary collecting duct (IMCD) cells. We now report that, of 14 interleukins tested, only interleukin-1alpha (IL-1alpha) and IL-1beta inhibited Na+ transport by primary cultures of rat IMCD. IL-1beta reduced both basal and mineralocorticoid (MC)-stimulated Na+ transport by 50-70%; its effect on glucocorticoid (GC)-stimulated Na+ transport was significantly less. IL-1beta continued to blunt MC stimulation of Na+ transport even after it had been removed from the medium for 24 h. The onset of action to inhibit Na+ transport was within 20 min. The acute effect from the basolateral surface was greater than that from the apical surface, but the effect from each surface was additive. In addition to its inhibitory effect on Na+ transport, chronic IL-1beta exposure increased both basal and cAMP-stimulated anion secretion rates. IL-1beta had no acute effect on anion secretion. Monolayers chronically treated with IL-1beta had an increased capacity to secrete fluid, as predicted from its effects on ion transport. Inhibitors of cyclooxygenase did not blunt the actions of IL-1beta. Furthermore, IL-1beta did not produce a rise in intracellular Ca2+. These results suggest novel signaling pathways induced by IL-1beta regulating Na+ and Cl- transport by the IMCD.
机译:越来越多的证据表明,除了肾上腺皮质激素外,其他因素还可能影响内髓收集管(IMCD)细胞对Na +转运的长期调节。我们现在报告,在测试的14种白介素中,只有白介素-1α(IL-1alpha)和IL-1beta抑制了大鼠IMCD的原代培养物中的Na +转运。 IL-1beta减少了基础和盐皮质激素(MC)刺激的Na +转运50-70%;它对糖皮质激素(GC)刺激的Na +转运的影响明显较小。即使将IL-1beta从培养基中去除24小时后,Na-1转运仍继续受到MC刺激的钝化。抑制Na +转运的作用开始于20分钟内。来自基底外侧表面的急性作用大于来自顶端表面的急性作用,但来自每个表面的急性作用是累加的。除了对Na +转运具有抑制作用外,长期暴露于IL-1beta会增加基础和cAMP刺激的阴离子分泌速率。 IL-1β对阴离子分泌没有急性影响。从对离子传输的影响可以预测,用IL-1β长期治疗的单分子膜分泌液体的能力增强。环氧合酶抑制剂不会使IL-1beta的作用减弱。此外,IL-1β不会引起细胞内Ca2 +的升高。这些结果表明由IL-1β诱导IMCD调节Na +和Cl-转运的新型信号通路。

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