Mechanical response of pulmonary artery under aerobic and hypoxic conditions
- 1 March 1977
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 42 (3) , 438-443
- https://doi.org/10.1152/jappl.1977.42.3.438
Abstract
The reactivity of isolated main pulmonary artery (MPA) from guinea pigs and rats to 2 vasoactive drugs, norepinephrine (NE) and histamine (H) was demonstrated in substrate-rich and substrate-free medium, under both aerobic (PO2 [O2 tension] = 95 .+-. 0.5 Torr) and hypoxic conditions (PO2 = 30 .+-. 1 Torr). The sensitivity of MPA from guinea pigs to NE and H during aerobic conditions was not significantly affected by the absence of substrate in the experimental medium. In the substrate-rich experimental medium (5.5 mM glucose), the reactivity of MPA from guinea pigs to NE and H was not significantly affected by acute hypoxia as compared with the response of MPA during aerobic conditions. These experiments contrast with data obtained when substrate is absent from the experimental medium. The dose-response curves of MPA from guinea pigs to NE and H under this condition were significantly blunted during hypoxia. Following the completion of the dose-response curves during aerobic conditions, with both NE and H, spontaneous mechanical activities were seen in the guinea pig MPA. During aerobic and hypoxic conditions MPA''s isolated from rats exhibited no physiological response to H even when administered in the dose required to produce the maximal response in MPA isolated from guinea pigs. The sensitivity of MPA from rats to NE during aerobic conditions is not significantly affected by the absence of substrate in the experimental medium. When the preparation was exposed to hypoxia, the presence of substrate failed to maintain the reactivity of MPA to NE. MPA isolated from rats demonstrated a smaller contractile response to NE than those from guinea pigs. No spontaneous mechanical activities were observed after NE or H administration. In addition to pointing out species differences, the important role of exogenous substrate in maintaining the reactivity of pulmonary vascular smooth muscle during hypoxia was shown.This publication has 13 references indexed in Scilit:
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