Prolonged or repeated intravascular complement activation has been proposed as a mechanism contributing to development of the adult respiratory distress syndrome. In sheep, intravascular complement activation results in severe pulmonary hypertension and hypoxemia and increased lung vascular permeability. These events are associated with sequestration of granulocytes and lymphocytes as well as intrapulmonary release of thromboxane. Completed pharmacologic studies indicate that thromboxane is the primary mediator of the hypoxemia, but not the pulmonary hypertension. The increase in permeability is related to the release of toxic oxygen radicals by complement stimulated leukocytes. The purpose of this proposal is to improve understanding of the cellular mechanisms responsible for the pulmonary dysfunction and the increase in lung vascular permeability. The first hypothesis is that the pathophysiology is the result of interactions of complement anaphylatoxins with granulocytes, lymphocytes, and endothelial cells. Specifically, activated granulocytes participate by releasing oxygen-derived free radicals and leukotriene B4. Activated lymphocytes participate by release of proinflammatory eicosanoids including thromboxane and sulfidopeptide leukotrienes. The second hypothesis is that through manipulation of the fatty acid substrate available for metabolism through the arachidonic acid cascade, eicosanoids with little biological activity can be substituted for the proinflammatory metabolites. The third hypothesis is that migration of granulocytes and monocytes through the air-blood barrier contributes to increases in endothelial and epithelial protein permeability through creation of gap junctions between cells. Successful completion of the proposed experiments will provide significant new information necessary to understanding cell-cell interactions during intravascular complement activation and to propose new hypotheses concerning the role of intravascular complement activation as an effector mechanism in the development of the adult respiratory distress syndrome.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
1R01HL034014-01A1
Application #
3346521
Study Section
Respiratory and Applied Physiology Study Section (RAP)
Project Start
1985-12-01
Project End
1989-11-30
Budget Start
1985-12-01
Budget End
1986-11-30
Support Year
1
Fiscal Year
1986
Total Cost
Indirect Cost
Name
Thomas Jefferson University
Department
Type
Schools of Medicine
DUNS #
061197161
City
Philadelphia
State
PA
Country
United States
Zip Code
19107
Carey, L A; Perkowski, S Z; Lipsky, C L et al. (1997) Neutrophil recruitment as a factor limiting injury or promoting recovery from acute lung injury. Am J Physiol 272:H279-89
Perkowski, S Z; Sloane, P J; Spath Jr, J A et al. (1996) TNF-alpha and the pathophysiology of endotoxin-induced acute respiratory failure in sheep. J Appl Physiol 80:564-73
Carey, L A; Schuhl, R A; Gee, M H (1995) Microplate reader assay for measurement of opsonized zymosan-stimulated superoxide anion production by neutrophils. Biotechniques 19:824-9
Armstead, V E; Perkowski, S Z; Woolkalis, M J et al. (1995) An association between lung lymph endothelin concentration and survival during endotoxemia in awake sheep. Shock 4:361-7
Carey, L A; Albertine, K H; Gee, M H (1994) In vivo endotoxin exposure increases neutrophil counts without maintenance of primed superoxide anion release in short-term cultures of sheep bone marrow. J Leukoc Biol 56:145-50
Albertine, K H; Rosolia, D L; Schuhl, R A et al. (1993) Physical and cytochemical properties of neutrophils activated in situ in the lung during ZAP infusion in sheep. J Appl Physiol 74:1361-73
McKenna, P J; Rosolia, D L; Ishihara, Y et al. (1992) Downregulation of blood and bone marrow neutrophils decreases expression of acute lung injury in sheep. Am J Physiol 263:H1492-8
Ishihara, Y; Rosolia, D L; McKenna, P J et al. (1990) Calcium is required for PMA induced superoxide release from human neutrophils. J Leukoc Biol 48:89-96
Peters, S P; Cerasoli Jr, F; Albertine, K H et al. (1990) ""Autoregulation"" of human neutrophil activation in vitro: regulation of phorbol myristate acetate-induced neutrophil activation by cell density. J Leukoc Biol 47:457-74
Cerasoli Jr, F; McKenna, P J; Rosolia, D L et al. (1990) Superoxide anion release from blood and bone marrow neutrophils is altered by endotoxemia. Circ Res 67:154-65

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