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December 1, 1989The Journal of Immunology320 citationsOpen Access

Macrophage cytotoxicity against schistosomula of Schistosoma mansoni involves arginine-dependent production of reactive nitrogen intermediates.

SJS L JamesJGJudith A. Glaven

Key Points

  • The aim is to investigate the role of arginine in macrophage-mediated cytotoxicity against Schistosoma mansoni larvae.
  • Assessed cytotoxic effects of LK-activated macrophages on schistosomula in vitro.
  • Evaluated nitrite production as a marker of macrophage activation and cytotoxic function.
  • Tested the effects of arginase and inhibitors on the killing of schistosomula.
  • LK-activated macrophages exhibit significant cytotoxicity, with arginine dependency confirmed by reduced killing when arginase or NG-monomethyl-L-arginine is present.
  • Nitrite production was detected in supernatants of LK-activated macrophages but not in controls.
  • Inhibitors of mitochondrial respiration resulted in schistosomula mortality, suggesting the involvement of reactive nitrogen intermediates.

Abstract

Lymphokine (LK)-activated macrophages are cytotoxic for multicellular larvae of the helminth parasite Schistosoma mansoni. Macrophage-mediated larval killing was found to be arginine dependent, as indicated by inhibition in the presence of exogenous arginase or the competitive inhibitor NG-monomethyl-L-arginine. Culture supernatant fluids from the larvicidal LK-activated macrophages contained nitrite, a product of activated macrophages derived by oxidation of arginine and implicated in the antitumor and antimicrobial effector function of these cells. Nitrite was not detectable in supernatant fluids obtained from nonactivated macrophages or from macrophages stimulated with LK in the presence of arginase or NG-monomethyl-L-arginine. Addition of excess iron or the reductant sodium dithionite to LK-activated macrophage cultures also inhibited larval killing in vitro, under conditions that have been shown by others to stabilize the activity of iron-containing enzymes involved in respiration. Nitrite production was not decreased under these conditions. These observations are consistent with the hypothesis that macrophage-mediated schistosomulum killing is caused, at least in part, by a mechanism proposed for tumor cytotoxicity, whereby production of reactive nitrogen intermediates triggers iron loss from critical target cell enzymes leading to lethal metabolic inhibition. In accordance, schistosomula were shown to be killed by inhibitors of mitochondrial respiration.

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Cite This Study

James et al. (1989) studied this question.

synapsesocial.com/papers/6a19b83b3f3ec013f0def8e8https://doi.org/10.4049/jimmunol.143.12.4208
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