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Effects of dirithromycin and erythromycylamine on human neutrophil degranulation
H Abdelghaffar1, E M Mtairag, M T Labro
1INSERM U294, CHU Xavier Bichat, Paris, France.
Abstract:
Dirithromycin and, to a lesser extent, erythromycylamine and erythromycin directly induced the release of three intragranular enzymes (lysozyme, lactoferrin, and beta-glucuronidase) from unstimulated human neutrophils. Macrolide-induced enzyme release was dependent upon the incubation time (30 to 180 min) and drug concentration. Dirithromycin was the most effective. At 120 min, release of lysozyme, beta-glucuronidase, and lactoferrin by macrolide (100 micrograms/ml)-treated cells, expressed as a percentage of total enzyme content, was, respectively, 58% +/- 8.3%, 52% +/- 10.7%, and 35% +/- 5.1% (dirithromycin); 42% +/- 3.9%, 28% +/- 5.8%, and 10% +/- 2.2% (erythromycylamine); and 35% +/- 4.0%, 19% +/- 4.3%, and 10% +/- 5.2% (erythromycin) (mean +/- standard error of the mean of three to eight experiments). The lowest macrolide concentrations which induced significant enzyme release were 10, 100, and 25 micrograms/ml, respectively, for dirithromycin, erythromycylamine, and erythromycin. Furthermore, we obtained evidence of a link between the prodegranulation effects of dirithromycin and erythromycylamine and the intragranular location of these drugs. Indeed, cell-associated drug levels increased for up to 60 min and then plateaued and declined substantially. Increasing the pH from 7 to 9 resulted in a parallel increase in drug uptake and the prodegranulation effect. Finally, when macrolide-treated neutrophils were disrupted by sonication and centrifuged, a correlation was found between lysozyme and beta-glucuronidase activities (both granule markers) and pellet-associated macrolide levels. Taken together, our results suggest that dirithromycin and erythromycylamine concentrate within neutrophil granules and then induce degranulation.
Insights
Dirithromycin and related macrolides trigger enzyme release from human neutrophils, concentrating within granules to induce degranulation. This effect is dose- and time-dependent, with dirithromycin showing the highest potency.
Area of Science:
- Immunology
- Pharmacology
Background:
- Human neutrophils contain intragranular enzymes like lysozyme, lactoferrin, and beta-glucuronidase.
- Macrolide antibiotics are known for their antimicrobial properties.
Purpose of the Study:
- To investigate the direct effects of macrolides on neutrophil degranulation.
- To determine the mechanism by which macrolides influence enzyme release from neutrophils.
Main Methods:
- Incubation of human neutrophils with varying concentrations and durations of dirithromycin, erythromycylamine, and erythromycin.
- Measurement of released intragranular enzymes (lysozyme, lactoferrin, beta-glucuronidase).
- Assessment of intracellular macrolide levels and correlation with enzyme release.
Main Results:
- Dirithromycin, erythromycylamine, and erythromycin directly induced dose- and time-dependent release of neutrophil enzymes.
- Dirithromycin demonstrated the most potent effect on enzyme release.
- Evidence suggests macrolides concentrate within neutrophil granules, leading to degranulation.
Conclusions:
- Dirithromycin and related macrolides can directly induce neutrophil degranulation.
- The prodegranulation effect is linked to the intragranular accumulation of these drugs within neutrophils.