Leukotrienes, the 5'-lipoxygenase metabolites of arachidonic acid, are pulmonary vasoconstrictors. The inhibition of leukotriene action by FPL 57231, a leukotriene end organ antagonist, markedly increases pulmonary blood flow in the normal fetus and prevents hypoxic pulmonary vasoconstriction in newborn and adult animals. Leukotrienes have been isolated in the lung lavage fluid taken from perfused rat lungs during hypoxic pulmonary vasoconstriction and from infants with persistent pulmonary hypertension syndrome. These studies suggest that leukotrienes may have an important role in maintaining the increased pulmonary vascular resistance in the fetus. At birth, with the initiation of ventilation there is a decrease in pulmonary vascular resistance and an increase in pulmonary blood flow. Prostaglandins, the cyclo-oxygenase metabolites of arachidonic acid, probably at least in part mediate this ventilation induced fall in pulmonary vascular resistance. Prostacyclin, a pulmonary vasodilator, is released from the lung with the initiation of ventilation. PGD2 specifically lowers pulmonary arterial pressure in pump perfused fetal goat lungs and in newborn lambs with hypoxic pulmonary hypertension. It produces mild pulmonary vasoconstriction in older animals. This study has several purposes: 1) to define the interaction between leukotrienes and prostaglandins in the control of the perintal pulmonary circulation; 2) to further define the role of leukotriene pulmonary hypertension induced by hypoxia and thromboxane activity 3) to determine whether the production of leukotrienes and prostaglandins by the lung is altered by different oxygen environments. A better understanding of the interaction between the prostaglandins and the leukotrienes is important in understanding the mechanisms that control pulmonary vascular resistance in the perinatal period and in the treatment of infants with persistent pulmonary hypertension syndrome.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL035518-03
Application #
3349469
Study Section
Respiratory and Applied Physiology Study Section (RAP)
Project Start
1986-07-01
Project End
1989-06-30
Budget Start
1988-07-01
Budget End
1989-06-30
Support Year
3
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of California San Francisco
Department
Type
Schools of Medicine
DUNS #
073133571
City
San Francisco
State
CA
Country
United States
Zip Code
94143
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Fineman, J R; Wong, J; Mikhailov, T et al. (1999) Altered endothelial function in lambs with pulmonary hypertension and acute lung injury. Pediatr Pulmonol 27:147-56
Black, S M; Johengen, M J; Soifer, S J (1998) Coordinated regulation of genes of the nitric oxide and endothelin pathways during the development of pulmonary hypertension in fetal lambs. Pediatr Res 44:821-30
Black, S M; Fineman, J R; Steinhorn, R H et al. (1998) Increased endothelial NOS in lambs with increased pulmonary blood flow and pulmonary hypertension. Am J Physiol 275:H1643-51
Black, S M; Johengen, M J; Ma, Z D et al. (1997) Ventilation and oxygenation induce endothelial nitric oxide synthase gene expression in the lungs of fetal lambs. J Clin Invest 100:1448-58
Black, S M; Bedolli, M A; Martinez, S et al. (1995) Expression of neuronal nitric oxide synthase corresponds to regions of selective vulnerability to hypoxia-ischaemia in the developing rat brain. Neurobiol Dis 2:145-55
Wong, J; Vanderford, P A; Winters, J et al. (1995) Endothelinb receptor agonists produce pulmonary vasodilation in intact newborn lambs with pulmonary hypertension. J Cardiovasc Pharmacol 25:207-15
Wong, J; Fineman, J R; Heymann, M A (1994) The role of endothelin and endothelin receptor subtypes in regulation of fetal pulmonary vascular tone. Pediatr Res 35:664-70
Crowley, M R; Fineman, J R; Soifer, S J (1994) HA1004, an intracellular calcium antagonist, selectively attenuates pulmonary hypertension in newborn lambs. J Cardiovasc Pharmacol 23:806-13
Fineman, J R; Wong, J; Morin 3rd, F C et al. (1994) Chronic nitric oxide inhibition in utero produces persistent pulmonary hypertension in newborn lambs. J Clin Invest 93:2675-83

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