Key result
Chronic Angiotensin II infusion in rats significantly increased systolic blood pressure to 198 mmHg by day 14 compared to 116 mmHg in controls, with early upregulation of medullary COX-2 and (P)RR.
Absolute Event Rate: 198% vs 116%
p-value: p=<0.05
In early ANG II-dependent hypertension, increased renal medullary (P)RR and COX-2 may attenuate vasoconstrictor effects, whereas at 14 days, vasoconstrictor COX-2 metabolites contribute to hypertension.
No immediate clinical implications for hypertension; leaves open time-dependent medullary COX-2 and (P)RR roles in human ANG II disease.
The (pro)renin receptor [(P)RR] upregulates cyclooxygenase-2 (COX-2) in inner medullary collecting duct (IMCD) cells through ERK1/2. Intrarenal COX-2 and (P)RR are upregulated during chronic ANG II infusion. However, the duration of COX-2 and (P)RR upregulation has not been determined. We hypothesized that during the early phase of ANG II-dependent hypertension, membrane-bound (P)RR and COX-2 are augmented in the renal medulla, serving to buffer the hypertensinogenic and vasoconstricting effects of ANG II. In Sprague-Dawley rats infused with ANG II (0.4 μg·min(-1)·kg(-1)), systolic blood pressure (BP) increased by day 7 (162 ± 5 vs. 114 ± 10 mmHg) and continued to increase by day 14 (198 ± 15 vs. 115 ± 13 mmHg). Membrane-bound (P)RR was augmented at day 3 coincident with phospho-ERK1/2 levels, COX-2 expression, and PGE2 in the renal medulla. In contrast, membrane-bound (P)RR was reduced and COX-2 protein levels were not different from controls by day 14. In cultured IMCD cells, ANG II increased secretion of the soluble (P)RR. In anesthetized rats, COX-2 inhibition decreased the glomerular filtration rate (GFR) and renal blood flow (RBF) during the early phase of ANG II infusion without altering BP. However, at 14 days of ANG II infusions, COX-2 inhibition decreased mean arterial BP (MABP), RBF, and GFR. Thus, during the early phase of ANG II-dependent hypertension, the increased (P)RR and COX-2 expression in the renal medulla may contribute to attenuate the vasoconstrictor effects of ANG II on renal hemodynamics. In contrast, at 14 days the reductions in RBF and GFR caused by COX-2 inhibition paralleled the reduced MABP, suggesting that vasoconstrictor COX-2 metabolites contribute to ANG II hypertension.
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González et al. (2014) studied Angiotensin II-dependent hypertension. Angiotensin II vs. Sham operation was evaluated on Systolic blood pressure at day 14 (p=<0.05). Chronic Angiotensin II infusion in rats significantly increased systolic blood pressure to 198 mmHg by day 14 compared to 116 mmHg in controls, with early upregulation of medullary COX-2 and (P)RR.
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