Literature DB >> 3969196

Organization of angiotensin II immunoreactive cells and fibers in the rat central nervous system. An immunohistochemical study.

R W Lind, L W Swanson, D Ganten.   

Abstract

The distribution of angiotensin II (AII)-immunoreactive cells and fibers was examined in adult male Sprague-Dawley rats with and without colchicine pretreatment. As seems to be the case for a number of other neuropeptides, AII is preferentially found in brain stem, hypothalamic, and limbic structures involved in the control of homeostatic functions. AII-stained cell bodies were most prominent in magnocellular parts of the paraventricular and supraoptic nuclei, and cells were also found in parvocellular parts of the former. Other hypothalamic nuclei containing cell bodies include the suprachiasmatic nucleus, the medial preoptic area, and perifornical parts of the lateral hypothalamic area. Of considerable interest was robust staining in several of the circumventricular organs, in particular the subfornical organ, where both cells and fibers were found. The results of water deprivation and nephrectomy suggest that this staining does not represent uptake of circulating peptide, but instead, represents AII-containing neural connections. In the thalamus, AII-stained cells were found in the paraventricular nucleus, the central medial nucleus, the nucleus reuniens, and rostral parts of the zona incerta. Two cell groups in the basal telencephalon, in the dorsal part of the bed nucleus of the stria terminalis and in the medial nucleus of the amygdala, lay at either end of an AII-stained pathway coursing through the stria terminalis. In the midbrain, immunoreactive cells were found in the interpeduncular and peripeduncular nuclei, and one pontine cell group was detected in the most lateral part of the lateral parabrachial nucleus. The only AII-stained cells in the medulla were in the nucleus of the solitary tract, near the margin of the area postrema. Fibers were found at all levels of the central nervous system, from the olfactory bulbs to the spinal cord, where terminal fields were observed in the substantia gelatinosa and in the intermediolateral cell column. Longitudinally oriented fibers were present throughout the periventricular fiber system and in the medial forebrain bundle, including its caudal extension in ventrolateral parts of the brain stem. It is suggested that, at many different levels, AII serves as both a hormone and neurotransmitter for fluid balance.

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Year:  1985        PMID: 3969196     DOI: 10.1159/000124046

Source DB:  PubMed          Journal:  Neuroendocrinology        ISSN: 0028-3835            Impact factor:   4.914


  72 in total

1.  Locations and properties of angiotensin II-responsive neurones in the circumventricular region of the duck brain.

Authors:  K Matsumura; E Simon
Journal:  J Physiol       Date:  1990-10       Impact factor: 5.182

Review 2.  Central neuromodulatory pathways regulating sympathetic activity in hypertension.

Authors:  Alexander Gabor; Frans H H Leenen
Journal:  J Appl Physiol (1985)       Date:  2012-07-05

3.  Effect of NMDA-induced lesion of the subfornical organ on the angiotensin II binding sites density and acetylcholinesterase or NADPH-diphorase activities in the lamina terminalis of the rat brain.

Authors:  S S Guilhaume; F M Corrêa
Journal:  Cell Mol Neurobiol       Date:  2001-02       Impact factor: 5.046

Review 4.  Comparative neuroanatomical aspects of the salt and water balance in birds and mammals.

Authors:  G Ramieri; G C Panzica
Journal:  J Endocrinol Invest       Date:  1989-01       Impact factor: 4.256

Review 5.  The role of neuropeptides in cardiovascular regulation.

Authors:  D Ganten; M Paul; R E Lang
Journal:  Cardiovasc Drugs Ther       Date:  1991-02       Impact factor: 3.727

6.  The renin-angiotensin system: it's all in your head.

Authors:  Kelly K Parsons; Thomas M Coffman
Journal:  J Clin Invest       Date:  2007-04       Impact factor: 14.808

Review 7.  Molecular evidence of tissue renin-angiotensin systems: a focus on the brain.

Authors:  Koji Sakai; Curt D Sigmund
Journal:  Curr Hypertens Rep       Date:  2005-04       Impact factor: 5.369

8.  Effect of intravenous angiotensin II infusion on responses to hypothalamic PVN injection of bicuculline.

Authors:  Lila P LaGrange; Glenn M Toney; Vernon S Bishop
Journal:  Hypertension       Date:  2003-11-03       Impact factor: 10.190

9.  Selective Deletion of the Brain-Specific Isoform of Renin Causes Neurogenic Hypertension.

Authors:  Keisuke Shinohara; Xuebo Liu; Donald A Morgan; Deborah R Davis; Maria Luisa S Sequeira-Lopez; Martin D Cassell; Justin L Grobe; Kamal Rahmouni; Curt D Sigmund
Journal:  Hypertension       Date:  2016-10-17       Impact factor: 10.190

Review 10.  Brain angiotensin II: new developments, unanswered questions and therapeutic opportunities.

Authors:  Juan M Saavedra
Journal:  Cell Mol Neurobiol       Date:  2005-06       Impact factor: 5.046

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