Systemic infusion of neuropeptide Y (NPY) reduces renal blood flow '/> Receptor subtypes Y1 and Y5 are involved in the renal effects of neuropeptide Y
首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Receptor subtypes Y1 and Y5 are involved in the renal effects of neuropeptide Y
【2h】

Receptor subtypes Y1 and Y5 are involved in the renal effects of neuropeptide Y

机译:受体亚型Y1和Y5参与神经肽Y的肾脏作用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

class="enumerated" style="list-style-type:decimal">Systemic infusion of neuropeptide Y (NPY) reduces renal blood flow and can concomitantly increase diuresis, natriuresis and calciuresis in anaesthetized rats. The present study was designed to investigate whether the apparently contradictory NPY effects on renal blood flow and urine formation and composition are mediated by distinct NPY receptor subtypes.NPY and its analogues, peptide YY (PYY), [Leu31, Pro34]NPY and NPY1336, were infused in incremental doses of 0.3, 1 and 3 μg kg−1 min−1 for 45 min each and the results compared to those obtained in vehicle-infused rats. Renal blood flow was monitored in 15 min intervals, while urine excretion and composition were determined in 15 min collection periods. Plasma renin activity and aldosterone concentrations were measured at the end of the final infusion period.Relative to vehicle NPY, PYY and [Leu31, Pro34]NPY dose-dependently reduced renal blood flow and increased diuresis, natriuresis and calciuresis with roughly similar potency; NPY1336 slightly but significantly increased renal blood flow but had no effect on diuresis, natriuresis and calciuresis. None of the peptides significantly affected endogenous creatinine clearance or kaliuresis.Plasma renin activity was significantly reduced by PYY. Quantitatively similar reductions were observed with NPY and [Leu31, Pro34]NPY but failed to reach statistical significance with the given number of experiments. NPY1336 did not reduce plasma renin activity. None of the peptides significantly affected plasma aldosterone concentrations.In another series of experiments infusion of PYY336 (2 μg kg−1 min−1 for 120 min) did not reduce renal blood flow but significantly enhancd diuresis and natriuresis to a similar extent as the NPY 2 μg kg−1 min−1.In a final series of experiments the Y1-selective antagonist, BIBP 3226 (1 or 10 μg kg−1 min−1) dose-dependently antagonized reductions of renal blood flow elicited by bolus injections of NPY (0.130 μg kg−1). BIBP 3226 (10 μg kg−1 min−1) also inhibited the effects of a 120 min infusion of NPY (2 μg kg−1 min−1) on renal blood flow but had only minor inhibitory effects on enhancements of diuresis and did not significantly affect enhancements of natriuresis.We conclude that NPY reduces renal blood via a classical Y1 subtype of NPY receptor. In contrast enhancements of diuresis, natriuresis and calciuresis occur via a distinct subtype which resembles the receptor that mediates NPY-induced enhancement of food intake.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 全身输注神经肽Y(NPY)会减少肾血流量,并能同时增加麻醉大鼠的利尿,利钠和钙尿。本研究旨在调查明显矛盾的NPY对肾血流量和尿液形成及组成的影响是否由不同的NPY受体亚型介导。 NPY及其类似物肽YY(PYY),[Leu 31 ,Pro 34 ] NPY和NPY1336分别以0.3、1和3μggkgkg -1 min - 1 每次45分钟,并将结果与​​溶媒注入大鼠的结果进行比较。每隔15分钟对肾脏血流进行监测,而每15分钟收集一次尿液的排泄量和组成。在最后一次输液结束时测量血浆肾素活性和醛固酮浓度。 相对于载体NPY,PYY和[Leu 31 ,Pro 34 ] NPY剂量依赖性地减少肾血流量并增加利尿,利尿和钙化作用,效力大致相同; NPY1336略有增加肾血流量,但对利尿,利钠和利尿作用无影响。没有一种肽显着影响内源性肌酐清除率或卡利尿病。 血浆肾素活性被PYY显着降低。 NPY和[Leu 31 ,Pro 34 ] NPY的定量减少量相似,但在给定的实验数量下均未达到统计学意义。 NPY1336不会降低血浆肾素活性。没有一种肽显着影响血浆醛固酮浓度。 在另一系列实验中,输注PYY336(2μgkg −1 min −1 120 min)并没有减少肾脏的血流量,但显着增强了利尿和利尿作用,其程度与NPY 2μgkg -1 .min -1 相似。
  • 在最后一系列实验中,Y1选择性拮抗剂BIBP 3226(1或10μggkgkg -1 min -1 )剂量依赖性地拮抗肾血流量的减少推注NPY(0.130μgkg -1 )引起的。 BIBP 3226(10μgkg -1 min -1 )也抑制了120 min NPY输注的作用(2μgkg -1 min −1 )对肾脏血流的影响,但对利尿作用的增强只有很小的抑制作用,而对利尿作用的增强没有显着影响。 我们的结论是,NPY可以通过一种途径减少肾脏血液NPY受体的经典Y1亚型。相比之下,利尿,利尿和钙尿的增强作用是通过一种独特的亚型发生的,该亚型类似于介导NPY诱导食物摄入增加的受体。
  • 著录项

    相似文献

    • 外文文献
    • 中文文献
    • 专利
    代理获取

    客服邮箱:kefu@zhangqiaokeyan.com

    京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
    • 客服微信

    • 服务号