The adult respiratory distress syndrome (ARDS) is characterized by pulmonary vasoconstriction as well as accumulation of cells and protein-rich fluid within the lung parenchyma. The mechanisms of these abnormalities are not understood. C3a and C5a, the anaphylatoxin products of complement activation, and formaylated oligopeptide bacterial products (e.g. formyl methionine-leucine-phenylalanine; fMLP) may be important in the development of these abnormalities. In this proposal we will investigate the actions of C3a, C5a, and fMLP on isolated pulmonary artery segments and pulmonary macrophages from rabbits.
The specific aims of this project are: 1. To determine if C3a, C5a, their des arg derivatives, or fMLP constrict isolated rabbit pulmonary artery ring segments. We will construct dose- response curves, and evaluate tissue desensitization, synergism, and cross-reactivity between these peptides. 2. To determine through the use of pharmacologic inhibitors if the actions of these peptides are attributable to the release of histamine or arachidonic acid metabolities. 3. To determine the role of endothelium in the actions of these peptides on isolated pulmonary artery segments by testing their effects on segments which have undergone mechanical denuding of endothelium. 4. To identify receptors for these peptides in pulmonary tissues utilizing fluorescent probes for C3a, C5a, and fMLP. 5. To analyze physical parameters, ligand binding characteristics, and functional properties of pulmonary macrophages through the use of multiparameter flow cytometry. These studies will broaden our understanding of cellular and vascular responses to C3a, C5a, and fMLP, and may result in the development of more effective therapeutic modalities for ARDS.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Physician Scientist Award (K11)
Project #
5K11HL002016-02
Application #
3087483
Study Section
(SRC)
Project Start
1987-09-01
Project End
1992-08-31
Budget Start
1988-09-01
Budget End
1989-08-31
Support Year
2
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of New Mexico
Department
Type
Schools of Medicine
DUNS #
829868723
City
Albuquerque
State
NM
Country
United States
Zip Code
87131
Song, Jian; Hu, Xinqun; Khan, Osman et al. (2004) Increased blood pressure, aldosterone activity, and regional differences in renal ENaC protein during vasopressin escape. Am J Physiol Renal Physiol 287:F1076-83
Crowell, R E; Hallin, G; Heaphy, E et al. (1995) Hyperoxic suppression of Fc-gamma receptor-mediated phagocytosis by isolated murine pulmonary macrophages. Am J Respir Cell Mol Biol 12:190-5
Crowell, R E; Du Clos, T W; Montoya, G et al. (1991) C-reactive protein receptors on the human monocytic cell line U-937. Evidence for additional binding to Fc gamma RI. J Immunol 147:3445-51
Crowell, R E; Van Epps, D E; Reed, W P (1990) Responses of isolated pulmonary arteries to the C5a anaphylatoxin. Am J Physiol 259:H1325-9
Crowell, R E; Van Epps, D E (1990) Nonsteroidal antiinflammatory agents inhibit upregulation of CD11b, CD11c, and CD35 in neutrophils stimulated by formyl-methionine-leucine-phenylalanine. Inflammation 14:163-71
Crowell, R E; Chick, T W; Reed, W P (1990) Pentoxifylline relaxes isolated pulmonary arteries after preconstriction with norepinephrine. Respiration 57:45-50
Crowell, R E; Van Epps, D E; Reed, W P (1989) Responses of isolated pulmonary arteries to synthetic peptide F-Met-Leu-Phe. Am J Physiol 257:H107-12