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Parasiticidal activity of bovine lactoperoxidase against Toxoplasma gondii.

机译:牛乳过氧化物酶对弓形虫的杀虫活性。

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Toxoplasma gondii is an obligatory intracellular parasitic protozoan transmitted via the ingestion of raw, infected meat that causes congenital infections. In a cell-free environment, virulent Toxoplasma was strikingly resistant to H2O2. The activity of H2O2 or H2O2 generated by glucose-glucose oxidase against the resistant tachyzoite stage of pathogenic T. gondii was enhanced by adding KI and bovine lactoperoxidase (bLPO), referred to here as the bLPO system. Replacing bLPO (heme content, 90%) with recombinant bLPO (heme content, 6%) did not enhance the parasiticidal activity with KI and H2O2. These results indicated that heme contributed to the enzyme activity and resulted in the killing of tachyzoites of T. gondii. Tachyzoites treated with the bLPO system also lost the ability to penetrate the mouse fibroblast cell line (NIH/3T3), and could be killed intracellularly after exposure by bLPO to a mouse macrophage cell line (J774A.1). These findings suggested that toxicity was mediated through small amounts of H2O2 generated by phagocytic events in naive macrophages, and by the peroxidative activity of bLPO. Our observations suggest that the bLPO system could help prevent the development of Toxoplasmosis in humans after ingesting raw, infected meat.
机译:弓形虫是一种强制性的细胞内寄生原生动物,它通过食入引起先天性感染的生肉而传播。在无细胞的环境中,有毒的弓形虫对H2O2具有惊人的抵抗力。通过添加KI和牛乳过氧化物酶(bLPO)(在此称为bLPO系统),可以增强葡萄糖-葡萄糖氧化酶产生的H2O2或H2O2抵抗病原性弓形虫速殖子阶段的活性。用重组bLPO(血红素含量为6%)代替bLPO(血红素含量为6%)不会增强KI和H2O2的杀虫活性。这些结果表明血红素促进了酶的活性并导致了弓形虫速殖子的杀死。用bLPO系统处理的速殖子也失去了穿透小鼠成纤维细胞系(NIH / 3T3)的能力,并且在被bLPO暴露于小鼠巨噬细胞系(J774A.1)后可能在细胞内被杀死。这些发现表明,毒性是由幼稚巨噬细胞中吞噬事件产生的少量H2O2和bLPO的过氧化活性介导的。我们的观察结果表明,bLPO系统可以在摄入生的,受感染的肉后帮助预防人类弓形虫病的发展。

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