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3-Methylindole-induced splenotoxicity: biochemical mechanisms of cytotoxicity
L W Updyke1, H L Yoon, A L Kiorpes
1Department of Pharmacology and Toxicology, School of Pharmacy and Pharmacal Sciences, Purdue University, West Lafayette, Indiana 47907.
Abstract:
3-Methylindole (3-MI) is a pneumotoxic metabolite of L-tryptophan that can form in the digestive tracts of humans and ruminants as a result of microbial protein metabolism. Alternatively, human lungs can be directly exposed to 3-MI formed during protein pyrolysis and inhalation of tobacco smoke. 3-MI has been shown to cause acute lung injury in both ruminants and rodents. The present studies demonstrate that the spleen is also a target for 3-MI-induced toxicity. A dose-dependent decrease in splenic weight (24-75%) and nucleated splenic cell number (22-68%) was observed 24 hr after intraperitoneal injection of 3-MI (50-300 mg/kg) to intact and adrenalectomized rats. These findings were associated with significant alterations in splenic histopathology. Mice appeared less affected by 3-MI than rats as no splenotoxicity was observed at doses less than 200 mg/kg. Other mono- and dimethyl-substituted indoles did not decrease mouse spleen cell numbers when administered in vivo. Phenobarbital pretreatment in vivo protected against 3-MI-induced splenotoxicity, suggesting a role for cytochrome P450-mediated metabolism of 3-MI in the splenotoxicity of this compound. Exposure of rat or mouse splenic cells to 3-MI (1 mM) in vitro resulted in toxic changes over 24 hr. However, equimolar concentrations of the structurally related mono- and dimethylindoles were also toxic in vitro, and preincubation with a variety of inhibitors of cytochrome P450 or prostaglandin synthase in vitro failed to protect against 3-MI-mediated toxicity to splenic cells in culture. These results suggest mechanisms of 3-MI splenotoxicity also exist that do not require bioactivation, and indicate a possible role for alkylindoles in suppression of immune function.
Insights
3-Methylindole (3-MI), a L-tryptophan metabolite, causes spleen toxicity in rats and mice. This compound may suppress immune function through mechanisms not requiring bioactivation.
Area of Science:
- Toxicology
- Immunology
- Metabolomics
Background:
- 3-Methylindole (3-MI), a L-tryptophan metabolite, is known to cause lung injury.
- Exposure occurs through digestive microbial metabolism, protein pyrolysis, and tobacco smoke.
- Previous studies identified 3-MI as a pneumotoxin in ruminants and rodents.
Purpose of the Study:
- To investigate the potential of 3-MI to induce toxicity in the spleen.
- To explore the mechanisms underlying 3-MI-induced splenotoxicity.
- To assess the role of cytochrome P450 and other pathways in 3-MI toxicity.
Main Methods:
- Intraperitoneal injection of 3-MI into rats and mice at varying doses.
- Assessment of splenic weight, nucleated cell counts, and histopathology.
- In vitro exposure of splenic cells to 3-MI and related compounds.
- Evaluation of protective effects of phenobarbital and enzyme inhibitors.
Main Results:
- 3-MI caused dose-dependent decreases in splenic weight and cell number in rats.
- Mice showed less sensitivity, with splenotoxicity observed at higher doses.
- In vitro studies revealed toxicity of 3-MI and related indoles to splenic cells.
- Phenobarbital pretreatment protected against 3-MI-induced splenotoxicity in vivo.
Conclusions:
- The spleen is a target organ for 3-MI toxicity.
- Mechanisms of 3-MI splenotoxicity may involve both bioactivation-dependent and independent pathways.
- Alkylindoles like 3-MI may play a role in immune suppression.