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NEUROHUMORAL CONTROL OF CIRCULATION AND HYPERTENSION
1Department of Cardiac Physiology and 2Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute, Suita, Osaka 5658565, Japan
Submitted 20 October 2003 ; accepted in final form 13 March 2004
To elucidate the types of voltage-dependent Ca2+ channels controlling ACh and catecholamine releases in the in vivo adrenal medulla, we implanted microdialysis probes in the left adrenal medulla of anesthetized rats and investigated the effects of Ca2+ channel antagonists on ACh, norepinephrine, and epinephrine releases induced by nerve stimulation. The dialysis probes were perfused with Ringer solution containing a cholinesterase inhibitor, neostigmine. The left splanchnic nerves were electrically stimulated at 2 and 4 Hz before and after intravenous administration of Ca2+ channel antagonists.
-Conotoxin GVIA (an N-type Ca2+ channel antagonist, 10 µg/kg) inhibited ACh release at 2 and 4 Hz by
40%, norepinephrine release at 4 Hz by
50%, and epinephrine release at 2 and 4 Hz by
45%. A fivefold higher dose of
-conotoxin GVIA (50 µg/kg) did not further inhibit these releases.
-Conotoxin MVIIC (a P/Q-type Ca2+ channel antagonist, 50 µg/kg) inhibited ACh and epinephrine releases at 4 Hz by
30%. Combined
-conotoxin GVIA (50 µg/kg) and MVIIC (250 µg/kg) inhibited ACh release at 2 and 4 Hz by
70% and norepinephrine and epinephrine releases at 2 and 4 Hz by
80%. Nifedipine (an L-type Ca2+ channel antagonist, 300 and 900 µg/kg) did not change ACh release at 2 and 4 Hz; however, nifedipine (300 µg/kg) inhibited epinephrine release at 4 Hz by 20%, and nifedipine (900 µg/kg) inhibited norepinephrine and epinephrine releases at 4 Hz by 30%. In conclusion, both N- and P/Q-type Ca2+ channels control ACh release on preganglionic splanchnic nerve endings while L-type Ca2+ channels do not. L-type Ca2+ channels are involved in norepinephrine and epinephrine releases on chromaffin cells.
anesthetized rats; microdialysis; norepinephrine; epinephrine; preganglionic autonomic nerve endings
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