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Updated: Aug 15, 2026

Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils
Published on: June 2, 2023
Melatonin and its kynurenin-like oxidation products affect the microbicidal activity of neutrophils
Sueli de Oliveira Silva1, Sandra Regina Quintal Carvalho, Valdecir Farias Ximenes
1Departamento de Análises Clínicas e Toxicológicas, Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, CEP 05508-900, São Paulo, SP, Brazil.
Abstract:
Activated phagocytes oxidize the hormone melatonin to N1-acethyl-N2-formyl-5-methoxykynuramine (AFMK) in a superoxide anion- and myeloperoxidase-dependent reaction. We examined the effect of melatonin, AFMK and its deformylated-product N-acetyl-5-methoxykynuramine (AMK) on the phagocytosis, the microbicidal activity and the production of hypochlorous acid by neutrophils. Neither neutrophil and bacteria viability nor phagocytosis were affected by melatonin, AFMK or AMK. However these compounds affected the killing of Staphylococcus aureus. After 60 min of incubation, the percentage of viable bacteria inside the neutrophil increased to 76% in the presence of 1 mM of melatonin, 34% in the presence of AFMK and 73% in the presence of AMK. The sole inhibition of HOCl formation, expected in the presence of myeloperoxidase substrates, was not sufficient to explain the inhibition of the killing activity. Melatonin caused an almost complete inhibition of HOCl formation at concentrations of up to 0.05 mM. Although less effective, AMK also inhibited the formation of HOCl. However, AFMK had no effect on the production of HOCl. These findings corroborate the present view that the killing activity of neutrophils is a complex phenomenon, which involves more than just the production of reactive oxygen species. Furthermore, the action of melatonin and its oxidation products include additional activities beyond their antioxidant property. The impairment of the neutrophils' microbicidal activity caused by melatonin and its oxidation products may have important clinical implications, especially in those cases in which melatonin is pharmacologically administered in patients with infections.
Insights
Melatonin and its oxidation products, AFMK and AMK, impair neutrophil microbicidal activity against Staphylococcus aureus. These compounds also inhibit hypochlorous acid production, suggesting complex roles beyond antioxidant properties with potential clinical implications.
Area of Science:
- Immunology
- Biochemistry
- Pharmacology
Background:
- Activated phagocytes metabolize melatonin to N1-acethyl-N2-formyl-5-methoxykynuramine (AFMK) via a superoxide anion- and myeloperoxidase-dependent pathway.
- Neutrophils play a critical role in the innate immune system, utilizing reactive oxygen species like hypochlorous acid (HOCl) for microbial killing.
Purpose of the Study:
- To investigate the impact of melatonin, AFMK, and N-acetyl-5-methoxykynuramine (AMK) on neutrophil functions.
- To assess the effects of these compounds on phagocytosis, microbicidal activity against Staphylococcus aureus, and hypochlorous acid production.
Main Methods:
- Incubation of neutrophils with melatonin, AFMK, and AMK.
- Measurement of neutrophil viability, bacterial viability, phagocytosis rates, and HOCl production.
- Analysis of Staphylococcus aureus killing in the presence of these compounds.
Main Results:
- Melatonin, AFMK, and AMK did not affect neutrophil or bacterial viability, nor phagocytosis.
- All tested compounds significantly impaired the killing of Staphylococcus aureus by neutrophils.
- Melatonin and AMK inhibited HOCl formation, while AFMK showed no effect on HOCl production.
Conclusions:
- Neutrophil microbicidal activity is a complex process involving more than just reactive oxygen species production.
- Melatonin and its oxidation products possess additional biological activities beyond their antioxidant capacity.
- The observed impairment of neutrophil microbicidal activity by melatonin and its derivatives may have significant clinical implications, particularly when melatonin is used therapeutically in infected patients.
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