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Characterization of the vasoactivity of tachykinins in isolated rat kidney: Functional studies and in vitro receptor autoradiography.

机译:速激肽在离体大鼠肾脏中的血管活性特征:功能研究和体外受体放射自显影。

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摘要

Although tachykinins have potent vascular actions, their effect on renal resistance blood vessels is currently unknown.; The vasoactive properties of tachykinins and related analogs were assessed in isolated perfused rat kidney. At a basal perfusion pressure (PP) of 75 {dollar}pm{dollar} 6 mm Hg (n = 5), bolus injections of substance P (SP) had no significant vasoactive effect. Following a sustained increase in baseline PP (134 {dollar}pm{dollar} 10 mm Hg) produced by phenylephrine (1 {dollar}mu{dollar}M), SP evoked a dose-dependent increase in PP. The largest dose of SP increased PP by 60 {dollar}pm{dollar} 5 mm Hg. The vasoconstrictor response to SP was not blocked by phentolamine when angiotensin II was used to increase basal tone. Thus, the response to SP is not mediated by norepinephrine. Pressor responses to SP were not potentiated by peptidase inhibitors, captopril and thiorphan. SP(1-7) had no effect on PP, suggesting that the pressor response to SP is C-terminal dependent and tachykinin receptor mediated. The selective NK-1 receptor agonist, (Sar{dollar}sp9{dollar},Met(O{dollar}sb2)sp{lcub}11{rcub}rbrack{dollar}SP, had no effect on PP. In contrast, both the selective NK-2 and NK-3 receptor agonists, GR-64349 and (MePhe{dollar}sp7{dollar}) NKB, produced dose-dependent pressor responses (116 {dollar}pm{dollar} 8 and 134 {dollar}pm{dollar} 15 mm Hg increases in PP at 33 nmol, respectively) and were more potent than SP. Infusion of capsaicin (500 nM) produced an initial increase in PP following by a more prolonged decrease in PP. Clamping the renal vein produced a marked increase in PP.; The localization of NK-3 receptors in rat kidney evaluated by film autoradiography using {dollar}sp{lcub}125{rcub}{dollar}I- (MePhe{dollar}sp7rbrack{dollar}NKB revealed a high density of specific binding sites on the proximal ureter and renal pelvis, moderate density in the renal vein and its large branches, and a low density in the inner strip of outer medulla, but no specific binding on the renal artery system and cortex. High resolution autoradiograms demonstrated {dollar}sp{lcub}125{rcub}{dollar}I- (MePhe{dollar}sp7rbrack{dollar}NKB binding sites on the tunica media of the renal vein and tunica muscularises of renal pelvis and ureter. Specific binding of {dollar}sp{lcub}125{rcub}{dollar}I-BHSP was found in association with the renal artery and renal pelvis. No specific SP binding sites were associated with renal vein.; These data indicate that the pressor effect of tachykinins in the isolated rat kidney can be mediated by NK-2 and/or NK-3 receptors. The latter may be on the vascular smooth muscle of the renal vein.
机译:尽管速激肽具有有效的血管作用,但目前尚不清楚它们对肾抵抗性血管的作用。在分离的灌注大鼠肾脏中评估速激肽和相关类似物的血管活性特性。在基础灌注压力(PP)为75 {pm} {dol} 6 mm Hg(n = 5)时,大剂量注射P物质(SP)没有明显的血管活性作用。苯肾上腺素(1 {μmol} M}产生的基线PP(134 pmpm {dollar} 10 mm Hg)持续增加后,SP引起PP剂量依赖性增加。 SP的最大剂量可将PP增加60 {pm} {dol} 5 mm Hg。当使用血管紧张素II增加基础张力时,苯妥拉明不会阻断对SP的血管收缩反应。因此,对SP的反应不是由去甲肾上腺素介导的。肽酶抑制剂,卡托普利和噻吩不能增强对SP的升压反应。 SP(1-7)对PP没有影响,表明对SP的升压反应是C端依赖性和速激肽受体介导的。选择性NK-1受体激动剂(Sar {dollar} sp9 {dollar},Met(O {dollar} sb2)sp {lcub} 11 {rcub} rbrack {dollar} SP对PP没有影响。选择性NK-2和NK-3受体激动剂GR-64349和(MePhe {dollar} sp7 {dollar})NKB产生剂量依赖性的升压反应(116 {dollar} pm {dollar} 8和134 {dollar} pm {美元}在33 nmol下PP分别增加15 mm Hg),并且比SP更有效。注入辣椒素(500 nM)导致PP最初增加,随后PP减少时间更长。 PP明显增加;通过使用{dol} sp {lcub} 125 {rcub} {dollar} I-(MePhe {dollar} sp7rbrack {dollar} NKB)的胶片放射自显影评估了大鼠肾脏中NK-3受体的定位输尿管和肾盂近端特异性结合位点的密度,肾静脉及其大分支中的中等密度,外延髓内带的密度低,但在肾动脉上没有特异性结合系统和皮质。高分辨率放射自显影显示了{dol} sp {lcub} 125 {rcub} {dollar} I-(MePhe {dollar} sp7rbrack {dollar} NKB结合位点在肾静脉的中膜和肾盂和输尿管的肌层。发现{dol} sp {lcub} 125 {rcub} {dollar} I-BHSP与肾动脉和肾盂相关联,没有特异性SP结合位点与肾静脉相关;这些数据表明升压作用速激肽在离体大鼠肾脏中的表达可以由NK-2和/或NK-3受体介导,后者可能在肾静脉的血管平滑肌上。

著录项

  • 作者

    Chen, Yuejin.;

  • 作者单位

    East Tennessee State University.;

  • 授予单位 East Tennessee State University.;
  • 学科 Health Sciences Pharmacology.; Biology Animal Physiology.; Biophysics Medical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;生理学;生物物理学;
  • 关键词

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