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Published on: February 9, 2016
Sunitinib-induced systemic vasoconstriction in swine is endothelin mediated and does not involve nitric oxide or
Mariëtte H W Kappers1, Vincent J de Beer, Zhichao Zhou
1Division of Pharmacology and Vascular Medicine, Department of Internal Medicine, Erasmus Medical Center, Rotterdam, The Netherlands.
Abstract:
Angiogenesis inhibition with agents targeting tyrosine kinases of vascular endothelial growth factor receptors is an established anticancer treatment, but is, unfortunately, frequently accompanied by systemic hypertension and cardiac toxicity. Whether vascular endothelial growth factor receptor antagonism also has adverse effects on the pulmonary and coronary circulations is presently unknown. In chronically instrumented awake swine, the effects of the vascular endothelial growth factor receptor antagonist sunitinib on the systemic, pulmonary, and coronary circulation were studied. One week after sunitinib (50 mg PO daily), mean aortic blood pressure (MABP) had increased from 83±5 mm Hg at baseline to 97±6 mm Hg (P<0.05) because of a 57±20% increase in systemic vascular resistance as cardiac output decreased. In contrast, sunitinib had no discernible effects on pulmonary and coronary hemodynamics or cardiac function. We subsequently investigated the mechanisms underlying the sunitinib-induced systemic hypertension. Intravenous administration of NO synthase inhibitor N(G)-nitro-l-arginine increased MABP by 24±1 mm Hg under baseline conditions, whereas it increased MABP even further after sunitinib administration (32±3 mm Hg; P<0.05). Reactive oxygen species scavenging with a mixture of antioxidants lowered MABP by 13±2 mm Hg before but only by 5±2 mm Hg (P<0.05) after sunitinib administration. However, intravenous administration of the dual endothelin A/endothelin B receptor blocker tezosentan, which did not lower MABP at baseline, completely reversed MABP to presunitinib values. These findings indicate that sunitinib produces vasoconstriction selectively in the systemic vascular bed, without affecting pulmonary or coronary circulations. The sunitinib-mediated systemic hypertension is principally attributed to an increased vasoconstrictor influence of endothelin, with no apparent contributions of a loss of NO bioavailability or increased oxidative stress.
Insights
Sunitinib, a cancer drug, increases blood pressure by constricting systemic blood vessels. This hypertension is mainly due to endothelin, not reduced nitric oxide or increased oxidative stress.
Area of Science:
- Cardiovascular Pharmacology
- Oncology Drug Effects
- Translational Research
Background:
- Vascular endothelial growth factor receptor (VEGFR) tyrosine kinase inhibitors are established cancer treatments.
- These therapies often cause systemic hypertension and cardiac toxicity.
- The impact of VEGFR antagonism on pulmonary and coronary circulations remains unclear.
Purpose of the Study:
- To investigate the effects of sunitinib, a VEGFR antagonist, on systemic, pulmonary, and coronary circulation in awake swine.
- To elucidate the mechanisms underlying sunitinib-induced systemic hypertension.
Main Methods:
- Chronically instrumented awake swine were administered sunitinib (50 mg PO daily).
- Hemodynamic parameters (mean aortic blood pressure, cardiac output, systemic vascular resistance) were monitored.
- Mechanisms of hypertension were explored using nitric oxide synthase inhibition, antioxidant administration, and endothelin receptor blockade.
Main Results:
- Sunitinib increased mean aortic blood pressure (MABP) by elevating systemic vascular resistance, with no significant changes in cardiac output.
- Pulmonary and coronary hemodynamics, as well as cardiac function, were unaffected by sunitinib.
- Systemic hypertension was reversed by endothelin receptor blockade, indicating endothelin's primary role.
Conclusions:
- Sunitinib causes selective vasoconstriction in the systemic circulation without impacting pulmonary or coronary circulations.
- The primary mechanism for sunitinib-induced hypertension involves increased endothelin-mediated vasoconstriction.
- Reduced nitric oxide bioavailability or increased oxidative stress do not significantly contribute to this hypertension.
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