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首页> 外文期刊>International immunopharmacology >Meglumine antimonate directly increases phagocytosis, superoxide anion and TNF-alpha production, but only via TNF-alpha it indirectly increases nitric oxide production by phagocytes of healthy individuals, in vitro.
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Meglumine antimonate directly increases phagocytosis, superoxide anion and TNF-alpha production, but only via TNF-alpha it indirectly increases nitric oxide production by phagocytes of healthy individuals, in vitro.

机译:葡甲磺酸锑酸盐直接增加吞噬作用,超氧阴离子和TNF-α的产生,但是仅通过TNF-α,它间接增加了健康个体吞噬细胞在体外的一氧化氮的产生。

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摘要

Leishmania has developed mechanisms to escape from immune defense of phagocytes by inhibiting microbicidal oxygen and nitrogen radicals. This work evaluated the influence of meglumine antimonate (Sb(V)) on the phagocyte functions involved in the defense against leishmania, through phagocytosis, reactive oxygen, nitrogen and TNF-alpha production in the absence or presence of the drug, in vitro. Meglumine antimonate increased the number of Saccharomyces cerevisiae ingested by monocyte and the percentage of these cells engaged in phagocytosis, which resulted in an increase of the monocyte phagocytic index by 158%. Meglumine antimonate also increased the number of S. cerevisiae ingested by neutrophil and the percentage of these cells engaged in phagocytosis, increasing the neutrophil phagocytic index by 219%. The median of percent reduction of NBT was significantly increased after treatment with this pentavalent antimony from 89.5% to 96.5%. Meglumine antimonate had no influence on nitric oxide production,but it significantly increased the mean+/-SEM production of tumor necrosis factor by 230%. However, monocytes incubated with TNF significantly increased NO production. This antimonial increased the phagocytic capacity of monocytes and neutrophils and enhanced superoxide anion production by phagocytes, which represent the first line of defense against the parasite. Furthermore, meglumine antimonate increased TNF, and via this cytokine, it may also indirectly increase NO production. Our data suggest that these immunomodulatory effects of meglumine antimonate may play a role in fighting leishmania and that meglumine antimonate provides the phagocytes with a mechanism that prevents leishmania from escaping immune defense.
机译:利什曼原虫已经开发出通过抑制杀微生物的氧和氮自由基而逃脱吞噬细胞的免疫防御的机制。这项工作评估了在不存在或存在该药物的情况下,通过吞噬作用,活性氧,氮和TNF-α的产生,锑葡甲胺(Sb(V))对参与抵抗利什曼原虫防御的吞噬细胞功能的影响。葡甲磺酸铵增加单核细胞摄入的酿酒酵母的数量和这些细胞参与吞噬作用的百分比,从而使单核细胞吞噬指数增加158%。葡甲胺锑酸盐还增加了嗜中性粒细胞摄入的酿酒酵母的数量和这些细胞参与吞噬作用的百分比,使嗜中性粒细胞的吞噬指数提高了219%。用五价锑处理后,NBT降低百分比的中位数显着增加,从89.5%增加到96.5%。葡甲磺酸铵对一氧化氮的产生没有影响,但是它使肿瘤坏死因子的平均+/- SEM产生显着增加了230%。然而,与TNF一起孵育的单核细胞显着增加了NO的产生。这种锑提高了单核细胞和嗜中性粒细胞的吞噬能力,​​并增强了吞噬细胞产生的超氧阴离子,这是抵抗寄生虫的第一道防线。此外,葡甲胺锑酸盐增加了TNF,并且通过这种细胞因子,它也可以间接增加NO的产生。我们的数据表明,葡糖胺锑酸盐的这些免疫调节作用可能在对抗利什曼原虫中起作用,而葡糖胺锑酸盐为吞噬细胞提供了防止利什曼原虫逃避免疫防御的机制。

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