No evidence for brain renin-angiotensin system activation during DOCA-salt hypertension

Brain renin-angiotensin system (RAS) activation is thought to mediate deoxycorticosterone acetate (DOCA)-salt hypertension, an animal model for human primary hyperaldosteronism. Here, we determined whether brainstem angiotensin II is generated from locally synthesized angiotensinogen and mediates DO...

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Veröffentlicht in:Clinical science (1979) 2021-01, Vol.135 (2), p.259-274
Hauptverfasser: Uijl, Estrellita, Ren, Liwei, Mirabito Colafella, Katrina M, van Veghel, Richard, Garrelds, Ingrid M, Domenig, Oliver, Poglitsch, Marko, Zlatev, Ivan, Kim, Jae B, Huang, Stephen, Melton, Lauren, Hoorn, Ewout J, Foster, Don, Danser, A H Jan
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Sprache:eng
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Zusammenfassung:Brain renin-angiotensin system (RAS) activation is thought to mediate deoxycorticosterone acetate (DOCA)-salt hypertension, an animal model for human primary hyperaldosteronism. Here, we determined whether brainstem angiotensin II is generated from locally synthesized angiotensinogen and mediates DOCA-salt hypertension. To this end, chronic DOCA-salt-hypertensive rats were treated with liver-directed siRNA targeted to angiotensinogen, the angiotensin II type 1 receptor antagonist valsartan, or the mineralocorticoid receptor antagonist spironolactone (n = 6-8/group). We quantified circulating angiotensinogen and renin by enzyme-kinetic assay, tissue angiotensinogen by Western blotting, and angiotensin metabolites by LC-MS/MS. In rats without DOCA-salt, circulating angiotensin II was detected in all rats, whereas brainstem angiotensin II was detected in 5 out of 7 rats. DOCA-salt increased mean arterial pressure by 19 ± 1 mmHg and suppressed circulating renin and angiotensin II by >90%, while brainstem angiotensin II became undetectable in 5 out of 7 rats (
ISSN:0143-5221
1470-8736
DOI:10.1042/CS20201239