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Fast and Specific Assessment of the Halogenating Peroxidase Activity in Leukocyte-enriched Blood Samples
Published on: July 28, 2016
Modulation of polymorphonuclear leukocyte microbicidal activity and oxidative metabolism by fibrinogen degradation
J W Kazura1, J D Wenger, R A Salata
1Department of Medicine, University Hospitals of Cleveland, OH 44106.
Abstract:
Fibrinogen degradation products (FDP) D and E are typically present in blood of patients with disseminated intravascular coagulation and related conditions in which granulocyte (PMN) defense against bacterial infection may be compromised. This study was intended to determine whether FDP modify PMN functions critical to their bactericidal activity. Incubation of human PMN and Escherichia coli with 50-100 micrograms/ml FDP did not affect phagocytosis, but reduced by greater than 90% the cells' ability to inhibit bacterial colony growth compared with control PMN incubated with albumin or fibrinogen. FDP (10-100 micrograms/ml) inhibited PMN O2- release and chemotaxis stimulated by FMLP by 17-50% (P less than 0.005) and 41% (P less than 0.01), respectively. Fragment E3, and not fragment D1, was primarily responsible for inhibition of FMLP-induced PMN O2- release. Phorbol myristate acetate (10 ng/ml), 1-oleoyl-2-acetylglycerol (10(-6) M), AA (4.2 x 10(-5) M), and zymosan-activated serum-stimulated PMN O2- release were also decreased 37-63% by FDP compared with control protein. There are at least two mechanisms by which FDP may impair PMN responses. With respect to FMLP, FDP (16-100 micrograms/ml) inhibited specific binding to the cell surface over a ligand concentration range of 1.4-85 nM [3H]FMLP. In contrast, FDP did not effect the extent of phorbol ester binding to PMN but blocked activation of protein kinase C. These data suggest that elevated plasma FDP inhibit several PMN functions critical to the bactericidal role of these inflammatory cells.
Insights
Fibrinogen degradation products (FDP) impair neutrophil functions essential for fighting bacterial infections. These FDP significantly reduce bacterial killing and hinder neutrophil responses, compromising immune defense.
Area of Science:
- Immunology
- Hematology
- Cellular Biology
Background:
- Fibrinogen degradation products (FDP) are elevated in conditions like disseminated intravascular coagulation.
- Neutrophil (PMN) dysfunction can compromise the immune system's ability to fight bacterial infections.
Purpose of the Study:
- To investigate the impact of FDP on critical neutrophil functions involved in bactericidal activity.
- To determine if FDP interfere with neutrophil phagocytosis, bacterial inhibition, and oxidative burst.
Main Methods:
- Human neutrophils were incubated with FDP and Escherichia coli.
- Phagocytosis, bacterial colony growth inhibition, chemotaxis, and oxidative burst (O2- release) were measured.
- Specific binding of FMLP and phorbol ester activation of protein kinase C were analyzed.
Main Results:
- FDP significantly reduced neutrophils' ability to inhibit bacterial growth by over 90%.
- FDP inhibited FMLP-stimulated O2- release and chemotaxis, with Fragment E3 being primarily responsible for O2- inhibition.
- FDP also decreased oxidative burst stimulated by various agents and inhibited protein kinase C activation.
Conclusions:
- Elevated plasma FDP negatively impact multiple neutrophil functions crucial for bacterial clearance.
- FDP interfere with neutrophil responses through mechanisms including reduced FMLP binding and impaired protein kinase C activation.
- These findings suggest FDP contribute to compromised host defense in patients with related conditions.
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