Effects of guanidino and uremic compounds on nitric oxide pathways

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Abstract

Aminoguanidine, N(G)-monomethyl-L-arginine (L-NMMA), N(G)N(G)dimethyl-L- arginine (asymmetric dimethylarginine; ADMA), creatinine, guanidinosuccinic acid, guanidinoproprionic acid and methylguanidine were added to cultures of activated murine macrophages. Only aminoguanidine, ADMA, L-NMMA and methylguanidine inhibited nitrite production in a dose-dependent manner. In the presence of 100 μM arginine, nitrite production was inhibited by 31.8 ± 7.1% by ADMA (100 μM; P < 0.01) but the same dose of methylguanidine was without effect. A higher dose of methylguanidine (1000 μM) inhibited nitrite production of 47.6 ± 5.6% (P < 0.001). The effects of these compounds were also tested on relaxation of human saphenous veins. L-NMMA and ADMA inhibited endothelium-dependent relaxations (EC50 = 4.7 ± 1.1 μM and 17.9 ± 4.9 μM, respectively); methylguanidine caused endothelium-independent contractions and reversed the relaxations to bradykinin and sodium nitroprusside (EC50 > 100 μM); aminoguanidine was without effect. The results of this study suggest that of the guanidino compounds which accumulate in renal failure, only ADMA is a potent inhibitor of nitric oxide (NO) synthesis. Methylguanidine is a weak inhibitor of nitric oxide synthesis, whereas the closely related compound aminoguanidine appears to inhibit selectively the inducible isoform of nitric oxide synthase and has no effect on constitutive NO synthase in human veins.

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MacAllister, R. J., Whitley, G. S. J., & Vallance, P. (1994). Effects of guanidino and uremic compounds on nitric oxide pathways. Kidney International, 45(3), 737–742. https://doi.org/10.1038/ki.1994.98

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