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Characterization of nitric oxide generator-induced hippocampal [3H]norepinephrine release. II. The role of calcium, reverse norepinephrine transport and cyclic 3',5'-guanosine monophosphate.

The mechanisms by which two nitrogen monoxide (NO) generators, hydroxylamine and S-nitroso-L-cysteine (NO-CYS), induce hippocampal [3H]norepinephrine ([3H]NE) release was investigated. Neither hydroxylamine- nor NO-CYS-induced release was affected by the guanylate cyclase inhibitors, methylene blue or LY 83,583. The effect of hydroxylamine was completely dependent on extracellular Ca++ and reduced by 40% in the presence of omega-conotoxin GVIA, an N-type Ca(++)-channel antagonist; however it was unaffected by Ni++, nifedipine, caffeine or thapsigargin. The stimulatory effect of hydroxylamine on hippocampal cyclic GMP formation was not significantly affected by removal of extracellular Ca++, indicating that Ca(++)-dependent release is not due to inhibition of NO formation from hydroxylamine. However, the response to NO-CYS was reduced by 35 to 50% in either nominally Ca(++)-free or 10 mM MgSO4-containing buffer. Interestingly, buffer containing ethylene glycol bis(beta-aminoethyl ether)-N,N'-tetraacetic acid dramatically enhanced the formation of NO from NO-CYS and potentiated the NO-CYS response. Both NO-CYS- and hydroxylamine-induced [3H]NE release was inhibited by NE transport blockers, indicating a prominent role for reverse transport. NO-CYS completely inhibited synaptosomal uptake of [3H]NE (IC50 approximately, 300 microM). NO generator-induced [3H]NE release has a glutamate-dependent component (see accompanying article). Inhibition of glutamate-evoked [3H]NE release by mazindol, an inhibitor of NE transport, suggests that the glutamate-dependent component also involves reversal of the NE transporter. These data suggest that NO produced from hydroxylamine or NO-CYS evoke both vesicular and nonvesicular release of hippocampal [3H]NE. Putative NO target molecules and the role of extracellular Ca++ are discussed.

Animals↗

Modulation of the effects of norepinephrine uptake inhibitors on the norepinephrine-induced contractile response of the porcine uterine artery during early pregnancy.

The effects of norepinephrine (NE) uptake inhibitors on the porcine uterine artery's contractile response to NE and their potential alteration during early pregnancy (Day 13 postcoitus; day of coitus = Day 0) in comparison with the end of the luteal phase (Days 11-14; first day of behavioral estrus = Day 0) was investigated. This pregnancy time point is characterized by a transient increase in resting uterine blood flow dependent on the presence of blastocysts, an increased endometrial vascular permeability, and the beginning of the endometrial attachment of the blastocysts. A cumulative concentration-response curve (CCRC) to NE was produced in isometrically-mounted rings. Cocaine (5 microM) was used to inhibit neuronal NE uptake and hydrocortisone (30 microM) was used to inhibit extraneuronal NE uptake. Either drug alone induced a leftward shift of the CCRC to NE without affecting the maximal response. This shift had the same amplitude at the end of the luteal phase and in early pregnancy. However, the leftward shift induced by cocaine was larger than that induced by hydrocortisone only in early pregnancy, and the leftward shift induced by exposure to both hydrocortisone and cocaine was larger in early pregnancy than at the end of the luteal phase. These results suggest that a significant sensitization of the contractile response of the porcine uterine artery to NE is induced by neuronal and extraneuronal uptake inhibitors and that this effect is altered in early pregnancy, possibly reflecting the existence of a mechanism protecting the uterine artery against excessive sympathetic stimulation.

Animals↗