Complement (C5)-derived peptides have been implicated as being mediators of acute lung injury (i.e. adult respiratory distress syndrome, ARDS), by virtue of their ability to cause sequestration of polymorphonuclear leukocytes (PMN) in the pulmonary vasculature and subsequent damage to endothelium. Neither the precise identity of the responsible C5-derived peptide nor the mechanism of PMN-mediated injury has yet been determined. The objective of the proposed research is to test the hypothesis that platelet-derived factors and/or metabolites of arachidonic acid together with C5a- and/or C5a des Arg-stimulated PMN alter the integrity of pulmonary microvascular endothelial cells. The proposed studies will involve purification and characterization of rabbit C5a and C5a des Arg as well as experiments designed to examine interaction between rabbit C5-derived peptides, rabbit PMN and rabbit endothelial cells. Synergistic effects betwee peptide-stimulated PMN, prostanoids and/or platelet factors on increased vascular permeability and PMN emigration into alveoli will be assessed in animal models of acute lung injury. The role of naturally occurring regulatory proteins (i.e. carboxypeptidase N, cochemotaxin, and chemotactic factor inhibitor) in modulating these interactions will also be determined in animal models and in vitro. Results from these studies should provide new information concerning interaction of the complement system, neutrophils, platelets and vascular endothelium in the pathogenesis of ARDS. Results of these studies should also provide clues to the rational investigation of prophylactic and therapeutic measures for ARDS.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Modified Research Career Development Award (K04)
Project #
5K04HL001542-04
Application #
3073869
Study Section
Pathology A Study Section (PTHA)
Project Start
1985-08-01
Project End
1990-07-31
Budget Start
1988-08-01
Budget End
1989-07-31
Support Year
4
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Saint Louis University
Department
Type
Schools of Medicine
DUNS #
City
Saint Louis
State
MO
Country
United States
Zip Code
63103
Heuertz, R M; Piquette, C A; Webster, R O (1993) Rabbits with elevated serum C-reactive protein exhibit diminished neutrophil infiltration and vascular permeability in C5a-induced alveolitis. Am J Pathol 142:319-28
Zanaboni, P B; Bradley, J D; Webster, R O et al. (1992) Cyclooxygenase inhibition prevents PMA-induced increase in pulmonary vascular permeability to albumin. J Appl Physiol 73:2011-5
Bajaj, M S; Kew, R R; Webster, R O et al. (1992) Priming of human neutrophil functions by tumor necrosis factor: enhancement of superoxide anion generation, degranulation, and chemotaxis to chemoattractants C5a and F-Met-Leu-Phe. Inflammation 16:241-50
Bradley, J D; Zanaboni, P B; Dahms, T E et al. (1991) Vascular resistance and Kf in normal and PMA-injured rabbit lungs: effects of adenosine. J Appl Physiol 71:417-24
Bradley, J D; Zanaboni, P B; Webster, R O et al. (1991) Adenosine prevents phorbol ester injury in rabbit lungs: role of leukotrienes and TNF. J Appl Physiol 71:1949-55
Zanaboni, P B; Bradley, J D; Webster, R O et al. (1991) Cyclooxygenase inhibitors prevent ethchlorvynol-induced injury in rat and rabbit lungs. J Appl Physiol 71:43-9
Kew, R R; Hyers, T M; Webster, R O (1990) Human C-reactive protein inhibits neutrophil chemotaxis in vitro: possible implications for the adult respiratory distress syndrome. J Lab Clin Med 115:339-45
Ohar, J A; Pyle, J A; Waller, K S et al. (1990) A rabbit model of pulmonary hypertension induced by the synthetic platelet-activating factor acetylglyceryl ether phosphorylcholine. Am Rev Respir Dis 141:104-10
Zanaboni, P B; Bradley, J D; Baudendistel, L J et al. (1990) Cyclooxygenase inhibition prevents PMA-induced increases in lung vascular permeability. J Appl Physiol 69:1494-501
McGarrity, S T; Stephenson, A H; Webster, R O (1989) Regulation of human neutrophil functions by adenine nucleotides. J Immunol 142:1986-94

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