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Updated: Oct 7, 2026

Hyperinsulinemic-Euglycemic Clamp in the Conscious Rat
Published on: February 7, 2011
Converting enzyme inhibition with captopril abolishes sympathoexcitation to euglycemic hyperinsulinemia in rats
M S Muntzel1, J Morales, A Akinsefunmi
1Department of Biological Sciences, Lehman College, Bronx, New York 10468-1589, USA. martinmu@alpha.lehman.cunny.edu
Abstract:
Converting enzyme inhibition and angiotensin II receptor antagonism attenuate elevations in heart rate and plasma norepinephrine in response to insulin, suggesting that integrity of the renin-angiotensin system is necessary for insulin-induced sympathoexcitation. To test this, we infused vehicle (saline) in control experiments, or insulin (40 mU/min) during euglycemic clamp in captopril-pretreated (intravenously 2.5 mg/kg, then 1 mg/kg/h) and in nonpretreated urethane-anesthetized Wistar rats while measuring mean arterial pressure, heart rate, and lumbar sympathetic nerve activity. Although euglycemic hyperinsulinemia produced similar blood pressure (BP) increases in insulin-infused rats (change in mean arterial pressure: +9 +/- 3 mm Hg) compared with vehicle-controls (+6 +/- 2 mm Hg), insulin decreased blood pressure (BP) in captopril-pretreated insulin-infused rats (-8 +/- 3 mm Hg). Control rats developed mild heart rate increases (change in heart rate: +28 +/- 15 beats/min), contrasting with a marked tachycardia in insulin-infused rats (+82 +/- 13 beats/min) and a bradycardia in captopril-treated insulin-infused rats (-16 +/- 18 beats/min). As with heart rate, insulin-infused rats experienced large increases in lumbar sympathetic nerve activity (+ 127 +/- 29%), whereas small and equivalent elevations were observed in vehicle-treated rats (+39 +/- 24%) and in captopril-pretreated insulininfused rats (+61 +/- 13%). These observations demonstrate an attenuation of insulin-induced sympathetic activation by renin-angiotensin blockade with captopril in Wistar rats, and suggest that the renin-angiotensin system is critical for insulin to exert its sympathoexcitatory effects.
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