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The effects of T-2 toxin on alveolar macrophage function in vitro
Abstract:
T-2 toxin, a metabolite of several Fusarium species, is a mycotoxin of the trichothecene family which occurs in a variety of grains. Previous work in our laboratory showed that T-2 toxin is highly toxic to rat alveolar macrophages in vitro at submicromolar concentrations. The present investigation was undertaken to study the basis of the cytotoxic effects observed. The following parameters of macrophage function were measured: macromolecular synthesis, release of 51Cr, cellular ATP, phagocytosis, and alveolar macrophage "activation." The incorporation of radiolabeled leucine into acid-precipitable molecules was significantly inhibited within 1 hr of treatment at sublethal concentrations, although amino acid uptake was unaffected. Cell volume and release of 51Cr was unaffected by 0.1 microM T-2 toxin after 6 hr but evidence of significant leakage was seen after 18 hr treatment. The capacity of alveolar macrophages to phagocytize Saccharomyces cerevisiae and 3H-Staphylococcus aureus was significantly reduced whereas binding of 3H-S. aureus to the macrophage was not. Macrophage activation with endotoxin (Escherichia coli lipopolysaccharide) and mitogen-generated lymphokines, as monitored by incorporation of [14C]glucosamine, was significantly altered at 0.01 microM T-2 toxin. Thus, the data clearly demonstrate that T-2 is toxic to alveolar macrophage function in vitro and suggest that the primary mechanism of this toxicity is related to the inhibition of protein synthesis.
Insights
T-2 toxin, a Fusarium mycotoxin, impairs rat alveolar macrophage function. It inhibits protein synthesis, reduces phagocytosis, and alters activation, indicating significant cellular toxicity.
Area of Science:
- Immunotoxicology
- Mycotoxicology
Background:
- T-2 toxin is a trichothecene mycotoxin found in grains.
- Previous studies demonstrated T-2 toxin's high toxicity to rat alveolar macrophages in vitro.
Purpose of the Study:
- To investigate the mechanisms underlying T-2 toxin's cytotoxic effects on alveolar macrophages.
- To assess the impact of T-2 toxin on specific macrophage functions.
Main Methods:
- Measurement of macromolecular synthesis (protein, RNA, DNA).
- Assessment of cell membrane integrity (51Cr release).
- Evaluation of phagocytic capacity and cellular ATP levels.
- Monitoring of macrophage activation markers.
Main Results:
- T-2 toxin significantly inhibited protein synthesis within 1 hour at sublethal doses.
- Phagocytosis of yeast and bacteria was reduced, while bacterial binding remained unaffected.
- Macrophage activation was altered at low T-2 toxin concentrations.
- Cell membrane leakage occurred after prolonged exposure (18 hours).
Conclusions:
- T-2 toxin exhibits significant in vitro toxicity towards alveolar macrophage function.
- The primary mechanism of T-2 toxin's cytotoxicity appears to be the inhibition of protein synthesis.
- These findings highlight the potential immunomodulatory and toxic effects of T-2 toxin on lung macrophages.