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Advanced Neurology Brain AT -R and kidney crosstalk
1
Formal analysis: Claudia Bregonzio, Gustavo Baiardi https://doi.org/10.1016/j.regpep.2004.12.015
Funding acquisition: Claudia Bregonzio, Gustavo Baiardi 6. DiBona GF, 2000, Nervous kidney. Interaction between renal
Investigation: Celia Ruberto, Victoria Belén Occhieppo sympathetic nerves and the renin-angiotensin system in the
Methodology: Celia Ruberto, Victoria Belén Occhieppo control of renal function. Hypertension, 36: 1083–1088.
Project Administration: Claudia Bregonzio, Gustavo Baiardi https://doi.org/10.1161/01.hyp.36.6.1083
Supervision: Claudia Bregonzio, Gustavo Baiardi 7. Johns EJ, Kopp UC, DiBona GF, 2011, Neural control of
Writing – original draft: Celia Ruberto, Victoria Belén renal function. Compr Physiol, 1: 731–767.
Occhieppo, Claudia Bregonzio https://doi.org/10.1002/cphy.c100043
Writing – review & editing: Celia Ruberto, Victoria Belén 8. DiBona, GF, 2005, Physiology in perspective: The Wisdom
Occhieppo, Claudia Bregonzio
of the Body. Neural control of the kidney. Am J Physiol Regul
Ethics approval and consent to participate Integr Comp Physiol, 289: R633–R641.
https://doi.org/10.1152/ajpregu.00258.2005
All procedures were carried out following the Guide for
the Care and Use of Laboratory Animals as adopted and 9. Pontes RB, Girardi AC, Nishi EE, et al., 2015, Crosstalk
promulgated by the National Institutes of Health and the between the renal sympathetic nerve and intrarenal
EU (Eighth Edition, 2011) and approved by the Animal angiotensin II modulates proximal tubular sodium
reabsorption. Exp Physiol, 100: 502–506.
Care and Use Committee, School of Chemical Sciences
(Res HCD no. 46/15 and 270/18), National University of https://doi.org/10.1113/EP085075
Cordoba. Efforts were made to minimize the number of 10. Johnson AK, Zardetto-Smith AM, Edwards GL, 1992,
animals used and their suffering. Integrative mechanisms and the maintenance of cardiovascular
and body fluid homeostasis: The central processing of sensory
Consent for publication input derived from the circumventricular organs of the lamina
terminalis. Prog Brain Res, 91: 381–393.
Not applicable.
https://doi.org/10.1016/s0079-6123(08)62357-2
Availability of data 11. Brownstein MJ, Russell JT, Gainer H, 1980, Synthesis,
The authors confirm that all data underlying the findings transport, and release of posterior pituitary hormones.
are fully available without restriction. All relevant data are Science, 207: 373–378.
included in the paper. https://doi.org/10.1126/science.6153132
References 12. Sakai K, Agassandian K, Morimoto S, et al., 2007, Local
production of angiotensin II in the subfornical organ causes
1. Blair-West JR, Carey KD, Denton DA, et al., 1998, Evidence elevated drinking. J Clin Invest, 117: 1088–1095.
that brain angiotensin II is involved in both thirst and
sodium appetite in baboons. Am J Physiol, 275: R1639– https://doi.org/10.1172/JCI31242
R1646. 13. Simpson JB, Routtenberg A, 1973, Subfornical organ: Site of
https://doi.org/10.1152/ajpregu.1998.275.5.R1639 drinking elicitation by angiotensin II. Science, 181: 1172–1175.
https://doi.org/10.1126/science.181.4105.1172
2. Fitzsimons JT, 1998, Angiotensin, thirst, and sodium
appetite. Physiol Rev, 78: 583–686. 14. Vivas L, Chiaraviglio E, Carrer HF, 1990, Rat organum
vasculosum laminae terminalis in vitro: Responses to
https://doi.org/10.1152/physrev.1998.78.3.583
changes in sodium concentration. Brain Res, 519: 294–300.
3. Alova LG, Stancheva SL, Matsoukas J, et al., 1999, Effects
of peptide and non-peptide antagonists of angiotensin https://doi.org/10.1016/0006-8993(90)90091-o
II receptors on drinking behavior in rats. J Physiol Paris, 15. Kopp UC, Jones SY, DiBona GF, 2008, Afferent renal
93: 219–224. denervation impairs baroreflex control of efferent renal
sympathetic nerve activity. Am J Physiol Regul Integr Comp
https://doi.org/10.1016/s0928-4257(99)80154-5
Physiol, 295: R1882–R1890.
4. De Gasparo M, Catt KJ, Inagami T, et al., 2000, International
union of pharmacology. XXIII. The angiotensin II receptors. https://doi.org/10.1152/ajpregu.90529.2008
Pharmacol Rev, 52: 415–472. 16. Mendelsohn FA, Allen AM, Chai SY, et al., 1990, The brain
angiotensin system: Insights from mapping its components.
5. Saavedra JM, Ando H, Armando I, et al., 2005, Anti-stress
and anti-anxiety effects of centrally acting angiotensin II Trends Endocrinol Metab, 1: 189–198.
AT1 receptor antagonists. Regul Pept, 128: 227–238. https://doi.org/10.1016/1043-2760(90)90052-5
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