Why the study?
Does prolonged inhaled nitric oxide increase pulmonary vasoconstriction in rats?
Does prolonged inhaled nitric oxide increase pulmonary vasoconstriction in rats?
Prolonged inhaled nitric oxide (1-3 weeks) does not increase pulmonary vasoconstriction in a rat model, suggesting that clinical rebound pulmonary hypertension may not be driven by down-regulation of endogenous NO.
Does not support endogenous NO down-regulation driving rebound pulmonary hypertension; hypothesis-generating for alternative mechanisms.
Down-regulation of the endogenous nitric oxide (NO) pathway may explain rebound pulmonary hypertension after discontinuation of inhaled NO. We determined whether the prolonged administration of inhaled NO increases pulmonary vasoconstriction, which may occur from decreased endogenous NO. Rats were placed in normoxic (N; 21% O2) or hypoxic (H; 10% O2) chambers with or without inhaled NO (20 ppm) for 1 or 3 wk. Immediately after or 24 h after discontinuation of NO, vasoconstrictive responses were determined in isolated lungs to acute hypoxia (HPV; 0% O2 for 6 min), angiotensin II (0.05 [micro sign]g), and the thromboxane analog U-46619 in the presence and absence of the nitric oxide synthase inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 100 [micro sign]M). Inhaled NO did not alter HPV or angiotensin II vasoconstriction in the N group immediately after or 24 h after discontinuation of NO. In the H group, inhaled NO decreased HPV but had no effect on the angiotensin II vasoconstriction compared with H alone. Inhaled NO did not alter the response to L-NAME. Inhaled NO did not alter, whereas L-NAME significantly decreased, the dose of U-46619 required to increase the pulmonary pressure by 10 mm Hg. In conclusion, prolonged inhaled NO decreased or did not alter HPV and did not alter vasoconstriction secondary to angiotensin II, U-46619, or L-NAME in N and H rats. These results suggest that prolonged inhaled NO does not increase pulmonary vasoconstriction, as would be expected from down-regulation of endogenous NO. Implications: High pulmonary pressure has been observed clinically after discontinuation of inhaled NO. This rat study suggests that 1-3 wk of inhaled NO does not increase pulmonary vasoconstriction, as would be expected from decreasing the endogenous vasodilator NO. (Anesth Analg 1998;87:1285-90)
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Frank et al. (1998) studied this question.
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