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首页> 外文期刊>Acta physiologica Scandinavica >Role of prostaglandin cyclooxygenase and cytochrome P450 pathways in the mechanism of natriuresis which follows hypertonic saline infusion in the rat.
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Role of prostaglandin cyclooxygenase and cytochrome P450 pathways in the mechanism of natriuresis which follows hypertonic saline infusion in the rat.

机译:高渗盐水注入大鼠后,前列腺素环加氧酶和细胞色素P450途径在利钠机制中的作用。

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摘要

AIM: The prostaglandin cyclooxygenase (COX) and P450 cytochrome (CYP450) pathways of arachidonic acid metabolism are functionally interrelated and both engaged in control of sodium excretion; the study focused on their contribution to the natriuresis which follows hypertonic saline infusion in the rat. METHODS: In anaesthetized rats, clearance studies were conducted, supplemented with laser-Doppler measurements of the cortical and medullary blood flow (CBF, MBF), and measurement of medullary tissue admittance (Y), an index of interstitial ion concentration. RESULTS: Indomethacin (Indo), 5 mg kg(-1) i.v. paradoxically enhanced the natriuresis secondary to intra-aortic suprarenal 5% saline load, further increasing sodium excretion by 385 +/- 73% (P < 0.01). After acute clotrimazole, 10 mg kg(-1) i.v. an inhibitor of CYP450 epoxygenase, the increase in natriuresis was smaller and did not differ from that observed after the drug's ethanol solvent. In rats pre-treated with clotrimazole for 3 days, hypertonic saline loading increased sodium excretion (U(Na)V) to 0.94 +/- 0.22 micromol min(-1) , compared with a significantly greater (P < 0.05) increase to 2.76 +/- 0.48 micromol min(-1) measured in untreated controls. Indo increased U(Na)V twofold, similarly in the clotrimazole and in the control group; in the absence or presence of clotrimazole treatment, COX blockade significantly decreased MBF and increased Y. CONCLUSION: The data indicate that blockade of the CYP450 epoxygenase significantly impairs excretion of sodium in rats acutely loaded with hypertonic NaCl solution. The paradoxical post-Indo natriuresis is preserved in clotrimazole treated rats, which speaks against the role of CYP450 pathway in the response.
机译:目的:花生四烯酸代谢的前列腺素环加氧酶(COX)和P450细胞色素(CYP450)通路在功能上相互关联,均参与钠排泄的控制。该研究的重点是大鼠高渗盐水注入后它们对利钠钠的贡献。方法:在麻醉的大鼠中,进行清除研究,并辅以激光多普勒测量皮层和髓质血流(CBF,MBF),以及测量髓质组织渗透率(Y),这是间质离子浓度的指标。结果:吲哚美辛(Indo),5 mg kg(-1)i.v.自相矛盾的是,继发于主动脉内肾上腔5%生理盐水负荷后的利尿作用,使钠排泄进一步增加385 +/- 73%(P <0.01)。急性克霉唑静注后10 mg kg(-1)作为CYP450环氧酶的抑制剂,利尿作用的增加较小,并且与使用该药物的乙醇溶剂后所观察到的没有差异。在用克霉唑预处理3天的大鼠中,高渗盐水负荷将钠排泄(U(Na)V)增加到0.94 +/- 0.22 micromol min(-1),而明显增加(P <0.05)到2.76在未经处理的对照中测得的+/- 0.48 micromol min(-1)。吲哚使U(Na)V增加两倍,在克霉唑和对照组中相似。结论:数据表明,CYP450环氧合酶的阻断显着损害急性高渗NaCl溶液中钠的排泄,而在无克霉唑治疗的情况下,COX阻断显着降低MBF并增加Y。在克霉唑治疗的大鼠中保留了矛盾的印后利尿钠盐,这说明了CYP450途径在应答中的作用。

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