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- W1990378643 abstract "Journal of Autonomic PharmacologyVolume 10, Issue 4 p. 201-212 The α-adrenoceptor mediating the tubular actions of the renal nerves in spontaneously hypertensive and stroke-prone spontaneously hypertensive rats B. A. Akpogomeh, B. A. Akpogomeh Department of Physiology, The Medical School, Birmingham B15 2TJ, UKSearch for more papers by this authorE. J. Johns, Corresponding Author E. J. Johns Department of Physiology, The Medical School, Birmingham B15 2TJ, UKDr E. J. JohnsSearch for more papers by this author B. A. Akpogomeh, B. A. Akpogomeh Department of Physiology, The Medical School, Birmingham B15 2TJ, UKSearch for more papers by this authorE. J. Johns, Corresponding Author E. J. Johns Department of Physiology, The Medical School, Birmingham B15 2TJ, UKDr E. J. JohnsSearch for more papers by this author First published: August 1990 https://doi.org/10.1111/j.1474-8673.1990.tb00019.xCitations: 5AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References Barajas, L. (1978). Innervation of the renal cortex. Fed. Proc., 37, 1192–1201. Bello-Reuss, E., Trevino, D. L. and Gottschalk, C. W. (1976). Effect of renal sympathetic nerve stimulation on proximal water and sodium reabsorption. J. Clin. Invest., 57, 1104–1107. DiBona, G. F. (1989). Neural control of renal function: cardiovascular implications. Hypertension, 13, 539–548. DiBona, G. F. and Sawin, L. L. (1982). Effect of renal nerve stimulation on NaCl and H2O transport in Henlé's loop of the rat. Am. J. Physiol., 243, F576–F580. DiBona, G. F. and Sawin, L. L. (1987). Role of renal α2-adrenergic receptors in spontaneously hypertensive rats. Hypertension, 9, 41–48. Graham, R. M., Pettinger, W. A., Sagalowsky, A., Brabson, J. and Grandler, T. (1982). Renal alpha-adrenergic receptor abnormality in the spontaneously hypertensive rat. Hypertension, 4, 881–887. Hesse, I. F. A. and Johns, E. J. (1984a). An in vivo study of the α-adrenoceptor subtypes on the renal vasculature of the anaesthetised rabbit. J. Auton. Pharmacol., 4, 145–152. Hesse, I. F. A. and Johns, E. J. (1984b). The subtype of α-adrenoceptor involved in the neural control of renal tubular sodium reabsorption in the rabbit. J. Physiol., 352, 527–538. Hesse, I. F. A. and Johns, E. J. (1985). The role of α-adrenoceptors in the regulation of tubular sodium reabsorption and renin secretion in the rabbit. Br. J. Pharmacol., 84, 715–724. Johns, E. J. (1981) An investigation into the type of β-adrenoceptor mediating sympathetically activated renin release in the cat. Br. J. Pharmacol., 73, 749–754. Johns, E. J. (1988). The action of amlodipine on adrenergically regulated sodium handling by the kidney in normotensive and hypertensive rats. Br. J. Pharmacol., 93, 561–568. Johns, E. J., Lewis, B. A. and Singer, B. (1976). The sodium-retaining effect of renal nerve activity in the cat: role of angiotensin formation. Clin. Sci. MoL Med., 51, 93–102. Johns, E. J. and Manitius, J. (1986). An investigation of the α-adrenoceptor mediating renal nerve-induced calcium reabsorption by the rat kidney. Br. J. Pharmacol., 89, 91–97. Minneman, K. P. (1989). α1-Adrenergic receptor subtypes, inositol phosphates and sources of cell Ca2+. Pharmacol. Rev., 40, 87–119. Osborn, J. L., Dibona, G. F. and THAMES, M. D. (1981). Beta-1 receptor mediation of renin secretion elicited by low frequency renal nerve stimulation. J. Pharmacol. Exp. Ther., 216, 265–269. Osborn, J. L., Holdaas, H., Thames, M. D. and DiBona, G. F. (1983). Renal adrenoceptor mediation of antinatriuretic and renin secretion responses to low frequency renal nerve stimulation in the dog. Circ. Res., 53, 298–305. Osborn, J. L. and Johns, E. J. (1989). Renal neurogenic control of renin and prostaglandin release. Miner. Electrolyte Metab., 15, 51–58. Pettinger, W. A., Sanchez, A., Saavedra, J., Haywood, J. R., Grandler, T. and Rodes, T. (1982). Altered renal alpha2-adrenergic receptor regulation in genetically hypertensive rats. Hypertension, 4 (Suppl. II), 188–192. Roman, R. J. and Cowley, A. W. (1985). Characterisation of a new model for the study of pressure natriuresis in the rat. Am. J. Physiol., 248, F190–F198. Smyth, D. D., Umemura, S. and Pettinger, W. A. (1985). Renal nerve stimulation causes α1-adrenoceptor mediated sodium retention but not α2-adrenoceptor antagonism of vasopressin. Circ. Res., 57, 304–311. VanZwieten, P. A., Timmermans, P. B. M. W. M., Thoolen, M. J. M. C., Wilfert, B. and DeJonge, A. (1985). Calcium dependency of vasoconstriction mediated by α1- and α2-adrenoceptors. J. Cardiovasc. Pharmacol., 7, (Suppl. 6) S113–S120. Citing Literature Volume10, Issue4August 1990Pages 201-212 ReferencesRelatedInformation" @default.
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