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Published on: December 21, 2011
Effects of two magainin peptides on eicosanoid release from rat peritoneal macrophages
1Department of Physiology, Medical University of South Carolina, Charleston 29425.
Abstract:
Magainins are novel polycationic peptides with broad-spectrum antimicrobial activity, including activity against gram-negative bacteria. Gram-negative bacteremia can elicit endotoxic shock that is associated with the increased formation of eicosanoids. Inhibition of eicosanoid synthesis has been shown to improve the outcome of experimental endotoxic shock. The aim of the present study was to test the in vitro effects of two magainin peptides, MSI-97 (M1) and MSI-98 (M2), on eicosanoid synthesis by rat peritoneal macrophages (M phi) stimulated by Salmonella enteritidis lipopolysaccharide (LPS; 50 micrograms/ml) and Salmonella minnesota lipid A (5 micrograms/ml) and to compare their effects on LPS reactivity with a metachromatic dye. M1 (100 micrograms/ml) significantly (P < 0.05) reduced LPS-stimulated synthesis of thromboxane B2 (TXB2), without changing 6-keto-prostaglandin F1 alpha in M phi. Similarly, M2 (10 micrograms/ml) significantly attenuated M phi synthesis of TXB2 stimulated by either LPS or lipid A. However, at a higher concentration (100 micrograms/ml), M2 but not M1 significantly augmented LPS-induced increases in TXB2 and 6-keto-prostaglandin F1 alpha. Polymyxin B (40 micrograms/ml) inhibited LPS production and lipid A-stimulated TXB2 production. M1 (100 micrograms/ml) and polymyxin B (10 and 40 micrograms/ml) also inhibited calcium ionophore A23187 (10 microM)-induced synthesis of TXB2. The lipid A moiety of LPS reacts with dimethylmethylene blue dye, providing a metachromatic assay of LPS. This metachromatic reaction with lipid A was significantly reduced by polymyxin B and M2 at all concentrations. M1 was effective only at the highest M1:lipid A concentration ratio (2:1). Thus, M1 and M2 share some similarities with polymyxin B in inhibiting lipid A reactivity with the dye, which suggests that these magainins may also bind to lipid A. However, M1 was devoid of any inhibitory effects on dye reactivity with S. enteritidis LPS and M2 was inhibitory at only one concentration ratio (1:5). In conclusion, the varied effects of the magainin peptides on LPS, lipid A, and M phi eicosanoid synthesis appear to depend on the type of peptide used and on its concentration.
Insights
Magainin peptides MSI-97 and MSI-98 show varied effects on eicosanoid synthesis in rat macrophages stimulated by lipopolysaccharide (LPS). These antimicrobial peptides may interact with LPS lipid A, influencing endotoxic shock pathways.
Area of Science:
- Biochemistry
- Immunology
- Pharmacology
Background:
- Magainins are antimicrobial peptides with potential against Gram-negative bacteria.
- Gram-negative bacteremia can cause endotoxic shock via eicosanoid production.
- Inhibiting eicosanoids may improve outcomes in experimental endotoxic shock.
Purpose of the Study:
- To investigate the in vitro effects of magainin peptides MSI-97 (M1) and MSI-98 (M2) on eicosanoid synthesis.
- To assess magainin peptide interaction with lipopolysaccharide (LPS) and its lipid A component.
Main Methods:
- Rat peritoneal macrophages (M phi) were stimulated with LPS or lipid A.
- Eicosanoid synthesis (thromboxane B2, 6-keto-prostaglandin F1 alpha) was measured.
- Magainin peptides and polymyxin B were tested for their effects.
- Lipid A reactivity with a metachromatic dye was assessed.
Main Results:
- M1 (100 µg/ml) reduced LPS-stimulated thromboxane B2 synthesis.
- M2 (10 µg/ml) attenuated LPS- and lipid A-stimulated thromboxane B2 synthesis.
- Higher M2 concentration (100 µg/ml) augmented LPS-induced eicosanoid production.
- Both M2 and polymyxin B reduced lipid A's dye reactivity, suggesting binding.
Conclusions:
- Magainin peptides exhibit concentration-dependent and variable effects on macrophage eicosanoid synthesis.
- Magainins may interact with the lipid A component of LPS.
- These findings suggest potential therapeutic applications in modulating endotoxic shock.

