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Surface contact modulation of inflammatory macrophage antibody dependent cytotoxicity and prostanoid release
1Department of Physiology and Cell Biology, Albany Medical College, New York 12208.
Abstract:
Adherence to extracellular matrix proteins modulates the functional and secretory activities of mononuclear phagocytes, although the mechanisms regulating these adherence-dependent changes are poorly understood. In this study, the ability of rat inflammatory peritoneal macrophages (PM) to adhere to an endothelial cell-derived extracellular matrix or a denatured collagen/fibronectin-coated surface and perform antibody dependent cell cytotoxicity (ADCC) and secrete reactive oxygen intermediates was compared with PM adherent to tissue culture plastic. Prostaglandin E2 (PGE2) and thromboxane B2 (TxB2), two major cyclooxygenase products released by inflammatory macrophages, were also measured by PM adherent to the protein coated surfaces. Rat exudate PM were equally adherent to tissue culture plastic or wells coated with either endothelial cell derived matrix or denatured collagen (gelatin)/fibronectin. PM adherent to a denatured collagen/fibronectin-coated wells demonstrated significantly less cytolytic activity (15 +/- 2% lysis) when compared with either tissue culture plastic adherent PM (43 +/- 7% lysis) or PM adherent to extracellular matrix (59 +/- 11% lysis). PM adherent to extracellular matrix released twofold more TxB2 than plastic adherent PM, while PM adherent to denatured collagen/fibronectin released 40% more PGE2 than cells adherent to tissue culture plastic or 80% more PGE2 than PM adherent to the extracellular matrix. PM adherent to denatured collagen/fibronectin release less superoxide anion (27 +/- .9 nmoles/10(6) PM) than PM adherent to either tissue culture plastic (43 +/- 1 nmoles/10(6) PM) or the extracellular matrix (60 +/- 0.5 nmoles/10(6) PM). Furthermore, incubation of plastic adherent PM with exogenous PGE2 reduced superoxide production in a dose-dependent manner. These results demonstrate that the inhibition of ADCC and secretion of reactive oxygen intermediates by PM adherent to a denatured collagen/fibronectin surface correlated with an increased release of the immunosuppressive prostanoid PGE2. Furthermore, the addition of exogenous PGE2 to plastic adherent PM reproduced the depression in ADCC and superoxide anion production observed by PM adherent to a denatured collagen/fibronectin surface. These studies suggest that the increased production and release of PGE2 by inflammatory macrophages adherent to a denatured collagen surface may act to suppress cytotoxic mechanisms and thereby constitutes part of an autocrine feedback mechanism regulating macrophage function during wound injury.
Insights
Extracellular matrix protein adherence affects mononuclear phagocyte function. Macrophages adhering to denatured collagen/fibronectin showed reduced cytotoxicity and reactive oxygen intermediate secretion, linked to increased prostaglandin E2 release.
Area of Science:
- Immunology
- Cell Biology
Background:
- Adherence to extracellular matrix (ECM) proteins influences mononuclear phagocyte functions.
- Mechanisms regulating these adherence-dependent changes in macrophages are not well understood.
Purpose of the Study:
- To investigate how adherence to different ECM proteins affects inflammatory macrophage functions.
- To compare antibody-dependent cell-mediated cytotoxicity (ADCC), reactive oxygen intermediate (ROI) secretion, and prostanoid release.
Main Methods:
- Rat inflammatory peritoneal macrophages (PM) were adhered to tissue culture plastic, endothelial cell-derived ECM, or denatured collagen/fibronectin.
- ADCC, ROI secretion, prostaglandin E2 (PGE2), and thromboxane B2 (TxB2) release were measured.
Main Results:
- PM on denatured collagen/fibronectin showed significantly lower ADCC and ROI secretion compared to plastic or ECM adherence.
- PM on denatured collagen/fibronectin exhibited increased PGE2 release, while PM on ECM showed increased TxB2 release.
- Exogenous PGE2 suppressed ADCC and ROI production in plastic-adherent PM.
Conclusions:
- Increased PGE2 release by macrophages adhering to denatured collagen/fibronectin suppresses their cytotoxic activity and ROI secretion.
- This suggests an autocrine feedback mechanism involving PGE2 in regulating macrophage function during wound healing.