Pathophysiology of the endothelin system - lessons from genetically manipulated animal models

被引:0
作者
K. von Websky
S. Heiden
T. Pfab
B. Hocher
机构
[1] Center for Cardiovascular Research,Department of Pharmacology
[2] Charité - Campus Benjamin Franklin,Department of Nephrology
关键词
Enteric Neuron; Renal Sympathetic Nerve Activity; Collect Duct; Epidermal Melanocyte; Fibrotic Remodelling;
D O I
10.1186/2047-783X-14-1-1
中图分类号
学科分类号
摘要
Shortly after discovery of ET-1 in 1988, the entire endothelin system was characterized. The endothelin system consists of the three peptides ET-1, ET-2 and ET-3, their G-protein-coupled receptors endothelin receptor A and B (ETRA and ETRB) and the two endothelin-converting enzymes (ECE-1 and ECE-2). Genetically modified animal models are an important tool in biomedical research. Here we describe the key findings obtained from genetically modified animal models either over-expressing compounds of the ET system or lacking these compounds (knockout mice). Results from the different transgenic and knockout models disclose that the ET system plays a major role in embryonic development. Two ET system-dependent neural crest-driven developmental pathways become obvious: one of them being an ET-1/ETAR axis, responsible for cardio-renal function and development as well as cranial development; the other seems to be an ET-3/ETBR mediated signalling pathway. Mutations within this axis are associated with disruptions in epidermal melanocytes and enteric neurons. These findings led to the discovery of similar findings in humans with Hirschsprung disease. In adult life the ET system is most important in the cardiovascular system and plays a role in fibrotic remodelling of the heart, lung and kidney as well as in the regulation of water and salt excretion.
引用
收藏
相关论文
共 266 条
  • [11] Maemura K(2008)Lack of iNOS Impairs Endothelial Function in Endothelin-1 Transgenic Mice Kidney Blood Press Res 31 127-134
  • [12] Kurihara Y(2000)Pulmonary fibrosis and chronic lung inflammation in ET-1 transgenic mice American Journal of Respiratory Cell and Molecular Biology 23 19-26
  • [13] Ueda O(2004)Endothelium-restricted overexpression of human endothelin-1 causes vascular remodeling and endothelial dysfunction Circulation 110 2233-2240
  • [14] Suzuki H(2004)Conditional cardiac overexpression of endothelin-1 induces inflammation and dilated cardiomyopathy in mice Circulation 109 255-261
  • [15] Yanagisawa M(1996)Characterization of the renal phenotype of transgenic rats expressing the human endothelin-2 gene Hypertension 28 196-201
  • [16] Kurihara H(1994)Interaction of endothelin-3 with endothelin-B receptor is essential for development of epidermal melanocytes and enteric neurons Cell 79 1277-1285
  • [17] Kimura S(2008)Endothelin 3 induces skin pigmentation in a keratin-driven inducible mouse model J Invest Dermatol 128 131-142
  • [18] Tomobe Y(1994)Elevated blood pressure and craniofacial abnormalities in mice deficient in endothelin-1 Nature 368 703-710
  • [19] Kobayashi M(1995)Aortic arch malformations and ventricular septal defect in mice deficient in endothelin-1 J Clin Invest 96 293-300
  • [20] Mitsui Y(1995)Impaired development of the thyroid and thymus in endothelin-1 knockout mice J Cardiovasc Pharmacol 26 S13-S16