The effect of rapid converting enzyme inhibition (CEI) with intravenous enalaprilat on technetium-99m-(99mTc) diethylenetriaminepentaacetic acid (DTPA) and 99mTc-dimercaptosuccinic acid (DMSA) renograms was evaluated in rats with two-kidney, one-clip renovascular hypertension. Rapid sequential DTPA renograms, performed immediately before and five minutes after enalaprilat injection (30 micrograms/kg), demonstrated a selective decrease in clipped kidney DTPA plasma clearance following CEI and no significant effect on unclipped kidney function. Pre- and post-CEI data were obtained with a single injection of DMSA by administering enalaprilat five minutes after the radiopharmaceutical. Enalaprilat slowed the rate of DMSA accumulation in clipped relative to unclipped kidneys, and reduced the clipped/unclipped kidney ratio of absolute DMSA uptake at 10 and 30 min. DTPA and DMSA were equally effective in demonstrating the CEI effect. Enalaprilat was also compared with captopril (3 mg/kg, intraperitoneally), using sequential DTPA renograms. Clipped kidney DTPA plasma clearance was reduced to an identical degree (40%) by both converting enzyme inhibitors. Clinical renographic protocols can probably be devised to take advantage of the rapid, reliable CEI of enalaprilat, thereby shortening total procedure time.
Addition of histidine to the serosal bath of the toad bladder increases the hydrosmotic response of vasopressin in this tissue. Because this represents primarily the effect of the imidazole ring of histidine, which is a known inhibitor of the production of prostaglandins, we evaluated whether histidine increases the response to vasopressin through decreased prostaglandin production. Histidine increases the response to vasopressin much more than 10(-5) M naproxen, even though the latter was equipotent to histidine in reducing prostaglandin E2 (PGE2) production. Furthermore, histidine was additive to naproxen in increasing the hydrosmotic effect of vasopressin, without causing a further decrease in PGE2 production. These findings suggest that histidine has an effect over and above that due to inhibition of prostaglandin synthesis. Our results suggest that histidine enhances the permeability of the tissue beneath the luminal membrane, an effect not found with naproxen. We propose that histidine increases the hydrosmotic response to vasopressin through at least two distinct mechanisms: 1) it decreases prostaglandin synthesis and thus increases luminal permeability; 2) it decreases the resistance to water movement of the tissues beneath the luminal membrane.