2000Anesthesia & AnalgesiaRequires access

Interaction of L-Arginine and Phosphodiesterase Inhibitors in Vasodilation of the Porcine Internal Mammary Artery

Arthur W. Wallace, Wynnis L. Tom

Open publisher page 8 citations

Abstract

UNLABELLED: We tested the hypothesis that L-arginine (the substrate for nitric oxide production)-combined with amrinone, milrinone (Type III phosphodiesterase [PDE] inhibitors), zaprinast, or sildenafil (Type V PDE inhibitors)-would vasodilate synergistically. Internal mammary artery segments were excised from anesthetized swine, divided into rings, and suspended in a tissue bath at 37 degrees C. Force of contraction was measured during dose-response testing of combinations of L-arginine and amrinone, milrinone, zaprinast, or sildenafil. Amrinone and milrinone were additive to L-arginine. N(G)-methyl-L-arginine (L-NMA) inhibited the effects of milrinone but not amrinone. The effective concentration of amrinone eliciting 50% relaxation (EC(50)) was 3.8E-05M (n = 6) when given alone and 4. 4E-05M (n = 6) with L-NMA. Milrinone had EC(50) = 6.0E-06M alone (n = 6) and 2.8E-05M (n = 6) with L-NMA. Zaprinast (EC(50) = 6.5E-05M, n = 6) and sildenafil (EC(30) = 1.8E-05M, n = 6) were synergistic with L-arginine. L-NMA blocked their effects, increasing the EC(50) for zaprinast to 9.9E-03M and the EC(30) for sildenafil to 6.1E+02M. In conclusion, L-arginine is additive to the vasodilation of the type III PDE inhibitors, amrinone and milrinone, but synergistic with the type V PDE inhibitors, zaprinast and sildenafil. IMPLICATIONS: Amrinone and milrinone, Type III cAMP-dependent phosphodiesterase inhibitors, are additive to L-arginine-dependent vasodilation. Zaprinast and sildenafil, Type V cGMP-dependent phosphodiesterase inhibitors, are synergistic with L-arginine.

About this research paper

What this paper is about

UNLABELLED: We tested the hypothesis that L-arginine (the substrate for nitric oxide production)-combined with amrinone, milrinone (Type III phosphodiesterase [PDE] inhibitors), zaprinast, or sildenafil (Type V PDE inhibitors)-would vasodilate synergistically. Internal mammary artery segments were excised from anesthetized swine, divided into rings, and suspended in a tissue bath at 37 degrees C. Force of contraction was measured during dose-response testing of combinations of L-arginine and amrinone, milrinone, zaprinast, or sildenafil. Amrinone and milrinone were additive to L-arginine. N(G)-methyl-L-arginine (L-NMA) inhibited the effects of milrinone but not amrinone. The effective concentration of amrinone eliciting 50% relaxation (EC(50)) was 3.8E-05M (n = 6) when given alone and 4. 4E-05M (n = 6) with L-NMA. Milrinone had EC(50) = 6.0E-06M alone (n = 6) and 2.8E-05M (n = 6) with L-NMA. Zaprinast (EC(50) = 6.5E-05M, n = 6) and sildenafil (EC(30) = 1.8E-05M, n = 6) were synergistic with L-arginine. L-NMA blocked their effects, increasing the EC(50) for zaprinast to 9.9E-03M and the EC(30) for sildenafil to 6.1E+02M. In conclusion, L-arginine is additive to the vasodilation of the type III PDE inhibitors, amrinone and milrinone, but synergistic with the type V PDE inhibitors, zaprinast and sildenafil. IMPLICATIONS: Amrinone and milrinone, Type III cAMP-dependent phosphodiesterase inhibitors, are additive to L-arginine-dependent vasodilation. Zaprinast and sildenafil, Type V cGMP-dependent phosphodiesterase inhibitors, are synergistic with L-arginine.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

UNLABELLED: We tested the hypothesis that L-arginine (the substrate for nitric oxide production)-combined with amrinone, milrinone (Type III phosphodiesterase [PDE] inhibitors), zaprinast, or sildenafil (Type V PDE inhibitors)-would vasodilate synergistically. Internal mammary artery segments were excised from anesthetized swine, divided into rings, and suspended in a tissue bath at 37 degrees C. Force of contraction was measured during dose-response testing of combinations of L-arginine and amrinone, milrinone, zaprinast, or sildenafil. Amrinone and milrinone were additive to L-arginine. N(G)-methyl-L-arginine (L-NMA) inhibited the effects of milrinone but not amrinone. The effective concentration of amrinone eliciting 50% relaxation (EC(50)) was 3.8E-05M (n = 6) when given alone and 4. 4E-05M (n = 6) with L-NMA. Milrinone had EC(50) = 6.0E-06M alone (n = 6) and 2.8E-05M (n = 6) with L-NMA. Zaprinast (EC(50) = 6.5E-05M, n = 6) and sildenafil (EC(30) = 1.8E-05M, n = 6) were synergistic with L-arginine. L-NMA blocked their effects, increasing the EC(50) for zaprinast to 9.9E-03M and the EC(30) for sildenafil to 6.1E+02M. In conclusion, L-arginine is additive to the vasodilation of the type III PDE inhibitors, amrinone and milrinone, but synergistic with the type V PDE inhibitors, zaprinast and sildenafil. IMPLICATIONS: Amrinone and milrinone, Type III cAMP-dependent phosphodiesterase inhibitors, are additive to L-arginine-dependent vasodilation. Zaprinast and sildenafil, Type V cGMP-dependent phosphodiesterase inhibitors, are synergistic with L-arginine.

Key concepts: Milrinone, Zaprinast, Amrinone, Sildenafil, Medicine, Vasodilation, Nitric oxide, Pharmacology

Related papers

Back to paper searchBrowse research topicsOriginal source
Interaction of L-Arginine and Phosphodiesterase Inhibitors in Vasodilation of the Porcine Internal Mammary Artery — Research Paper | ScholarLens