首页> 外文期刊>Journal of applied toxicology >Tributyltin and dibutyltin alter secretion of tumor necrosis factor alpha from human natural killer cells and a mixture of T cells and natural killer cells
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Tributyltin and dibutyltin alter secretion of tumor necrosis factor alpha from human natural killer cells and a mixture of T cells and natural killer cells

机译:三丁基锡和二丁基锡改变人类自然杀伤细胞以及T细胞和自然杀伤细胞混合物的肿瘤坏死因子α的分泌

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Butyltins (BTs) have been in widespread use. Tributyltin (TBT) has been used as a biocide in a variety of applications and is found in human blood samples. Dibutyltin (DBT) has been used as a stabilizer in polyvinyl chloride plastics and as a de-worming agent in poultry. DBT, like TBT, is found in human blood. Human natural killer (NK) cells are the earliest defense against tumors and viral infections and secrete the cytokine tumor necrosis factor-alpha (TNF-α). TNF-α is an important regulator of adaptive and innate immune responses. TNF-α promotes inflammation and an association between malignant transformation and inflammation has been established. Previously, we have shown that TBT and DBT were able to interfere with the ability of NK cells to lyse tumor target cells. Here we show that BTs alter cytokine secretion by NK cells as well as a mixture of T and NK lymphocytes (T/NK cells). We examined 24-, 48-h and 6-day exposures to TBT (200-2.5 nM) and DBT (5-0.05 μM) on TNF-α secretion by highly enriched human NK cells and T/NK cells. The results indicate that TBT (200-2.5 nM) decreased TNF-α secretion from NK cells. In the T/NK cells, 200 nM TBT decreased secretion whereas 100-5 nM TBT increased secretion of TNF-α. NK cells or T/NK cells exposed to higher concentrations of DBT showed decreased TNF-α secretion whereas lower concentrations showed increased secretion. The effects of BTs on TNF-α secretion are seen at concentrations present in human blood.
机译:丁基锡(BTs)已被广泛使用。三丁基锡(TBT)已在多种应用中用作杀生物剂,并存在于人体血液样本中。二丁基锡(DBT)已在聚氯乙烯塑料中用作稳定剂,并在家禽中用作驱虫剂。与TBT一样,DBT也存在于人体血液中。人类自然杀伤(NK)细胞是最早防御肿瘤和病毒感染的细胞,并分泌细胞因子肿瘤坏死因子-α(TNF-α)。 TNF-α是适应性和先天性免疫反应的重要调节剂。 TNF-α促进炎症,并且恶性转化与炎症之间的联系已经建立。以前,我们已经证明TBT和DBT能够干扰NK细胞裂解肿瘤靶细胞的能力。在这里,我们显示BTs会改变NK细胞以及T和NK淋巴细胞(T / NK细胞)的混合物的细胞因子分泌。我们检查了高浓缩的人NK细胞和T / NK细胞对TNF-α分泌的TBT(200-2.5 nM)和DBT(5-0.05μM)的暴露24、48小时和6天。结果表明,TBT(200-2.5 nM)降低了NK细胞的TNF-α分泌。在T / NK细胞中,200 nM TBT减少分泌,而100-5 nM TBT增加TNF-α的分泌。暴露于较高浓度DBT的NK细胞或T / NK细胞显示TNF-α分泌减少,而较低浓度显示分泌增加。在人血中存在浓度时,可以看到BTs对TNF-α分泌的影响。

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