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Published on: June 5, 2012
Antibiotic inhibition of the respiratory burst response in human polymorphonuclear leukocytes
W L Hand1, D L Hand, N L King-Thompson
1Veterans Administration Medical Center, Atlanta, Decatur, Georgia 30033.
Abstract:
Recently we found that certain antibiotics which are markedly concentrated by human polymorphonuclear leukocytes (PMN) failed to kill susceptible, intraphagocytic Staphylococcus aureus, even though cellular drug levels were quite high. The possibility that specific antibiotics might adversely affect phagocyte antibacterial function was considered. Thus, we studied the effects of multiple antibiotics and adenosine, a known modulator of the PMN respiratory burst response, on neutrophil antibacterial function. At nontoxic concentrations, these drugs had no effect on degranulation in stimulated PMN. Adenosine was a potent inhibitor of formyl-methionyl-leucyl-phenylalanine (FMPL)-stimulated superoxide and hydrogen peroxide generation in PMN but produced less inhibition of microbial particle-induced respiratory burst activity. Three of the tested antibiotics, all of which reach high concentrations in phagocytic cells, had a marked modulatory effect on the PMN respiratory burst. Clindamycin, which enters phagocytes by the cell membrane adenosine (nucleoside) transport system, had only a modest effect on FMLP-mediated superoxide production but inhibited the microbial particle-induced response by approximately 50%. Roxithromycin and trimethoprim were efficient inhibitors of PMN superoxide generation stimulated by FMLP and concanavalin A (also inhibited by erythromycin) but had less effect on zymosan-mediated respiratory burst activity. Antibiotics which entered phagocytes less readily had no effect on the respiratory burst response in PMN. These results, as well as those of experiments with inhibitors of cell membrane nucleoside receptors, indicated that the antibiotic effect is mediated through intraphagocytic pathways. The possibility that antibiotic-associated inhibition of the PMN respiratory burst response might alter leukocyte antimicrobial and inflammatory function deserves further evaluation.
Insights
Certain antibiotics concentrated in human immune cells (PMN) can impair their ability to kill bacteria. This study investigates how antibiotics affect neutrophil antibacterial function and the respiratory burst response.
Area of Science:
- Immunology
- Pharmacology
- Microbiology
Background:
- High intracellular concentrations of certain antibiotics within polymorphonuclear leukocytes (PMN) did not correlate with killing intraphagocytic Staphylococcus aureus.
- This suggested a potential impairment of phagocyte antibacterial function by specific antibiotics.
Purpose of the Study:
- To investigate the effects of various antibiotics and adenosine on neutrophil antibacterial function.
- To determine if antibiotics modulate the PMN respiratory burst response.
Main Methods:
- Assessed the impact of antibiotics and adenosine on PMN degranulation and respiratory burst activity.
- Studied the effects on superoxide and hydrogen peroxide generation stimulated by different agents (FMPL, microbial particles, concanavalin A).
- Examined the role of cell membrane nucleoside transport systems in antibiotic uptake and effect.
Main Results:
- Adenosine inhibited FMPL-stimulated respiratory burst but had less effect on particle-induced activity.
- Clindamycin, roxithromycin, and trimethoprim modulated the PMN respiratory burst, particularly particle-induced responses.
- Antibiotics with lower cellular uptake showed no effect on the respiratory burst.
Conclusions:
- Specific antibiotics, notably clindamycin, roxithromycin, and trimethoprim, can inhibit the PMN respiratory burst response.
- The observed effects are likely mediated through intracellular pathways, potentially involving nucleoside transport systems.
- Further research is warranted to evaluate the impact of antibiotic-induced inhibition of PMN respiratory burst on leukocyte antimicrobial and inflammatory functions.
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