EXPERIMENTAL IMMUNOLOGY
The effect of clindamycin and amoxicillin on neutrophil extracellular trap (NET) release
 
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Submission date: 2016-01-18
 
 
Acceptance date: 2016-01-20
 
 
Publication date: 2016-03-24
 
 
Cent Eur J Immunol 2016;41(1):1-5
 
KEYWORDS
ABSTRACT
Neutrophil extracellular traps (NETs) are threads of nuclear DNA complexed with antimicrobial proteins released by neutrophils to extracellular matrix to bind, immobilise, and kill different pathogens. NET formation is triggered by different physiological and non-physiological stimulants. It is also suggested that antibiotics could be non-physiological compounds that influence NET release.
The aim of the study was to investigate the effect of clindamycin and amoxicillin on NET release and the phagocyte function of neutrophils.
Neutrophils isolated from healthy donors by density centrifugation method were incubated with amoxicillin or clindamycin for two hours, and then NET release was stimulated with phorbol 12-myristate 13-acetate (PMA). After three hours of incubation with PMA NETs were quantified as amount of extracellular DNA by fluorometry and visualised by immunofluorescent microscopy. The percent of phagocyting cells was measured by flow cytometry.
We showed that amoxicillin induces NET formation (increase of extracellular DNA fluorescence, p = 0.03), while clindamycin had no influence on NET release (p > 0.05), as confirmed by quantitative measurement and fluorescent microscopy. Regarding phagocyte function, both antibiotics increased bacterial uptake (43.3% and 61.6% median increase for amoxicillin and clindamycin, respectively).
We concluded that the ability of antibiotics to modulate NET release depends on the antibiotic used and is not associated with their ability to influence phagocytosis.
REFERENCES (15)
1.
Brinkmann V, Reichard U, Goosmann C, et al. (2004): Neutrophil extracellular traps kill bacteria. Science 303: 1532-1535.
 
2.
Arazna M, Pruchniak MP, Zycinska K, Demkow U (2013): Neutrophil extracellular trap in human diseases. Adv Exp Med Biol 756: 1-8.
 
3.
Manda A, Pruchniak MP, Araźna M, Demkow UA (2014): Neutrophil extracellular traps in physiology and pathology. Cent Eur J Immunol 39: 116-121.
 
4.
Pruchniak MP, Kotuła I, Manda-Handzlik A (2015): Neutrophil extracellular traps (Nets) impact upon autoimmune disorders. Cent Eur J Immunol 40: 217-224.
 
5.
Araźna M, Pruchniak MP, Demkow U (2015): Reactive Oxygen Species, Granulocytes, and NETosis. Adv Exp Med Biol 836: 1-7.
 
6.
Minić S, Bojić M, Vukadinov J, et al. (2009): Immunomodulatory actions of antibiotics. Med Pregl 62: 327-330.
 
7.
Van Vlem B, Vanholder R, De Paepe P, et al. (1996): Immunomodulating effects of antibiotics: literature review. Infection 24: 275-291.
 
8.
Roszkowski W, Ko HL, Roszkowski K, et al. (1985): Antibiotics and immunomodulation: effects of cefotaxime, amikacin, mezlocillin, piperacillin and clindamycin. Med Microbiol Immunol 173: 279-289.
 
9.
Ziegeler S, Raddatz A, Hoff G, et al. (2006): Antibiotics modulate the stimulated cytokine response to endotoxin in a human ex vivo, in vitro model. Acta Anaesthesiol Scand 50: 1103-1110.
 
10.
Jerjomiceva N, Seri H, Völlger L, et al. (2014): Enrofloxacin enhances the formation of neutrophil extracellular traps in bovine granulocytes. J Innate Immun 6: 706-712.
 
11.
Schilcher K, Andreoni F, Uchiyama S, et al. (2014): Increased neutrophil extracellular trap-mediated Staphylococcus aureus clearance through inhibition of nuclease activity by clindamycin and immunoglobulin. J Infect Dis 210: 473-482.
 
12.
Konstantinidis T, Kambas K, Mitsios A, et al. (2015): Immunomodulatory role of Clarithromycin in Acinetobacter baumannii infection via Neutrophil Extracellular Traps formation. Antimicrob Agents Chemother 60: 1040-1048.
 
13.
Guz K, Bugla-Płoskońska G (2007): The immunomodulatory and anti-inflammatory properties of different antimicrobial agents. Postepy Hig Med Dosw (Online) 61: 828-837.
 
14.
Eicka S, Pfistera W, Fiedlerb D, Straubea E (2000): Clindamycin promotes phagocytosis and intracellular killing of periodontopathogenic bacteria by crevicular granulocytes: an in vitro study. J. Antimicrob. Chemother 46: 583-588.
 
15.
Wittmann S, Arlt M, Rothe G, Fröhlich D (2004): Differential effects of clindamycin on neutrophils of healthy donors and septic patients. International Immunopharmacology 4: 929-937.
 
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