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(Hypertension. 2003;41:56.)
© 2003 American Heart Association, Inc.
Scientific Contributions |
From the Departments of Pharmacology (S.F.F., J.L.I.), Medicine (J.L.I.), and Anesthesiology (B.A.D., P.R.K.), School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, New York; and University of Arizona Sarver Heart Center (M.-H.H.), Tuscon, Ariz.
Correspondence to Joseph L. Izzo, Jr, MD, Department of Medicine, Millard Fillmore Health System, 3 Gates Circle, Buffalo, NY 14209. E-mail JIzzo{at}KaleidaHealth.Org
Both stimulatory and suppressive responses of the sympathetic nervous system to angiotensin II (AII) have been reported in intact animals. To elucidate possible cellular mechanisms, we studied AII-induced changes in cytosolic Ca2+ ([Ca2+]i) in primary cultures of rat stellate ganglion neurons. Two different patterns of [Ca2+]i responses to AII were observed: dose-dependent increases in [Ca2+]i in cells with intrinsically low baseline [Ca2+]i (n=64) and dose-dependent suppression of [Ca2+]i in neurons with intrinsically higher baseline [Ca2+]i (n=46). Individual neurons could express both response patterns to AII. In neurons with low basal [Ca2+]i, superfusion with Ca2+ ionophore (ionomycin) increased [Ca2+]i and reversed the initial AII-induced stimulatory pattern. L-type Ca2+ channel antagonism (nifedipine) in neurons with high baseline [Ca2+]i lowered [Ca2+]i and reversed the initial AII-induced suppressive response. Both stimulatory and suppressive responses were abolished by AT1 receptor antagonism (losartan). AII-induced stimulatory responses were blocked by IP3 receptor antagonism (2-APB) and by thapsigargin. AII-induced suppression of neuronal [Ca2+]i was blunted when Na-Ca exchange was impaired. We conclude that [Ca2+]i acts as a switch for AII-mediated stimulatory and suppressive responses in individual sympathetic neurons. AT1 receptor-mediated neuronal stimulation and suppression may allow local homeostatic adaptation to meet complex systemic needs.
Key Words: sympathetic nervous system angiotensin II calcium calcium channel blockers norepinephrine inositol
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