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Cytolytic mechanisms of activated macrophages. Tumor necrosis factor and L-arginine-dependent mechanisms act synergistically as the major cytolytic mechanisms of activated macrophages.
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Natural and recombinant human interleukin 1-beta is cytotoxic for human melanoma cells.
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Effector mechanisms of cytolytically activated macrophages. I. Secretion of neutral proteases and effect of protease inhibitors.
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Analysis of nitrate, nitrite, and [15N]nitrate in biological fluids.
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Killing of Leishmania parasites in activated murine macrophages is based on an L-arginine-dependent process that produces nitrogen derivatives.
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Tumoricidal effector molecules of murine macrophages.
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Cytokine-induced synthesis of nitrogen oxides in macrophages: a protective host response to Leishmania and other intracellular pathogens.
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Activated macrophages use different cytolytic mechanisms to lyse a virally infected or a tumor target.
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Soluble amoebicidal factors mediate cytolysis of Naegleria fowleri by activated macrophages.
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Differentiation of murine macrophages to express nonspecific cytotoxicity for tumor cells results in L-arginine-dependent inhibition of mitochondrial iron-sulfur enzymes in the macrophage effector cells.
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Release of reactive nitrogen intermediates and reactive oxygen intermediates from mouse peritoneal macrophages. Comparison of activating cytokines and evidence for independent production.
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Activity of recombinant tumor necrosis factor on Toxoplasma gondii and Trypanosoma cruzi.
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The role of nitrogen oxides as effector molecules of parasite killing.
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Macrophage cytotoxicity against Entamoeba histolytica trophozoites is mediated by nitric oxide from L-arginine.
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Tumor necrosis factor-alpha synergizes with IFN-gamma in mediating killing of Leishmania major through the induction of nitric oxide.
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