期刊文献+

Renaldopaminergic system:Pathophysiological implications andclinical perspectives 被引量:2

Renaldopaminergic system:Pathophysiological implications andclinical perspectives
下载PDF
导出
摘要 Fluid homeostasis, blood pressure and redox balance in the kidney are regulated by an intricate interaction between local and systemic anti-natriuretic and natriuretic systems. Intrarenal dopamine plays a central role on this interactive network. By activating specifc receptors, dopamine promotes sodium excretion and stimulates anti-oxidant and anti-inflammatory pathways. Different pathological scenarios where renal sodium excretion is dysregulated, as in nephrotic syndrome, hypertension and renal infammation, can be associated with impaired action of renal dopamine including alteration in biosynthesis, dopamine receptor expression and signal transduction. Given its properties on the regulation of renal blood fow and sodium excretion, exogenous dopamine has been postulated as a potential therapeutic strategy to preventrenal failure in critically ill patients. The aim of this review is to update and discuss on the most recent findings about renal dopaminergic system and its role in several diseases involving the kidneys and the potential use of dopamine as a nephroprotective agent. Fluid homeostasis, blood pressure and redox balance in the kidney are regulated by an intricate interaction between local and systemic anti-natriuretic and natriuretic systems. Intrarenal dopamine plays a central role on this interactive network. By activating specific receptors, dopamine promotes sodium excretion and stimulates anti-oxidant and anti-inflammatory pathways. Different pathological scenarios where renal sodium excretion is dysregulated, as in nephrotic syndrome, hypertension and renal inflammation, can be associated with impaired action of renal dopamine including alteration in biosynthesis, dopamine receptor expression and signal transduction. Given its properties on the regulation of renal blood flow and sodium excretion, exogenous dopamine has been postulated as a potential therapeutic strategy to prevent renal failure in critically ill patients. The aim of this review is to update and discuss on the most recent findings about renal dopaminergic system and its role in several diseases involving the kidneys and the potential use of dopamine as a nephroprotective agent.
出处 《World Journal of Nephrology》 2015年第2期196-212,共17页 世界肾病学杂志(英文版)
基金 Supported by The ANPCYT,No.PICT 2012-1775,Universidad de Buenos Aires,Nos.UBACYT 20020110200048 and 2002 0130200105BA Sociedad Argentina de Hipertensión Arterial(Stimulus Grant for Reasearch on Hypertension 2014-2015)
关键词 DOPAMINE Hypertension KIDNEY Na+ K+-ATPase Sodium Oxidative stress D1 receptors D2 receptors Renal failure EDEMA 肾脏 临床分析 治疗方法 多巴胺
  • 相关文献

同被引文献217

  • 1Michael Maceyka,Kuzhuvelil B. Harikumar,Sheldon Milstien,Sarah Spiegel.Sphingosine-1-phosphate signaling and its role in disease[J].Trends in Cell Biology.2011(1)
  • 2Viedt C,Dechend R,Fei J,et al.MCP-1 induces inflammatory activation of human tubular epithelial cells: involvement of the transcription factors, nuclear factor-kappaB and activating protein-1. Journal of the American Society of Nephrology . 2002
  • 3Henry Krum,Markus Schlaich,Rob Whitbourn,Paul A Sobotka,Jerzy Sadowski,Krzysztof Bartus,Boguslaw Kapelak,Anthony Walton,Horst Sievert,Suku Thambar,William T Abraham,Murray Esler.??Catheter-based renal sympathetic denervation for resistant hypertension: a multicentre safety and proof-of-principle cohort study(J)The Lancet . 2009 (9671)
  • 4Gu Ruimin,Jin Yan,Zhai Yuanyuan,Yang Lei,Zhang Chengbiao,Li Wennan,Wang Lijun,Kong Shumin,Zhang Yunhong,Yang Baofeng,Wang Wen-Hui.PGE2 inhibits basolateral 50 pS potassium channels in the thick ascending limb of the rat kidney. Kidney International . 2008
  • 5Vallon V,Stockand J,Rieg T.P2Y receptors and kidney function. Wiley Interdiscip Rev Membr Transp Signal . 2012
  • 6Shiohira S,Yoshida T,Sugiura H,Nishida M,Nitta K,Tsuchiya K.Sphingosine-1-phosphate acts as a key molecule in the direct mediation of renal fibrosis. Physiol Rep . 2013
  • 7Nagami GT,Plumer AK,Beyda RM,Schachter O.Effects of acid challenges on type 2 angiotensin II receptor-sensitive ammonia production by the proximal tubule. American Journal of Physiology Renal Physiology . 2014
  • 8Morla L,Brideau G,Fila M,Crambert G,Cheval L,Houillier P,Ramakrishnan S,Imbert-Teboul M,Doucet A.Renal proteinase-activated receptor 2,a new actor in the control of blood pressure and plasma potassium level. Journal of Biological Chemistry . 2013
  • 9Kario K,Ogawa H,Okumura K,Okura T,Saito S,Ueno T,Haskin R,Negoita M,Shimada K.SYMPLICITY HTN-Japan-First Randomized Controlled Trial of Catheter-Based Renal Denervation in Asian Patients. Circulation Journal . 2015
  • 10Mansley MK,Neuhuber W,Korbmacher C,Bertog M.Norepinephrine stimulates the epithelial Na+channel in cortical collecting duct cells viaα2-adrenoceptors. American Journal of Physiology Renal Physiology . 2015

引证文献2

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部