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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Vaccenic acid-mediated reduction in cytokine production is independent of c9,t11-CLA in human peripheral blood mononuclear cells
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Vaccenic acid-mediated reduction in cytokine production is independent of c9,t11-CLA in human peripheral blood mononuclear cells

机译:疫苗酸介导的细胞因子产生的减少独立于人外周血单个核细胞中的c9,t11-CLA

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摘要

The ruminant trans fatty acid vaccenic acid (tVA) favorably alters markers of inflammation. However, it is not yet clear whether these effects are attributed to its endogenous partial conversion to c9,t11-CLA, which is known to possess anti-inflammatory properties. We compared the cytokine reducing potential of tVA to c9,t11-CLA in human T-helper (Th) cells as a main source of cytokine production during inflammation. Secondly, we assessed whether a bioconversion of tVA to c9,t11-CLA via stearoyl-CoA desaturase (SCD) encoded activity takes place in peripheral blood mononuclear cells (PBMC) in order to relate the outcomes of intracellular cytokine measurement to the degree of conversion. TVA reduced the percentage of both IL-2 and TNF-α expressing Th cells significantly, but to a lesser extent compared to c9,t11-CLA, as determined by flow cytometry after alloreactive stimulation of PBMC. Pre-treatment with the selective PPARγ antagonist T0070907 largely re-established the IL-2 and TNF-α positive Th cell population in both tVA and c9,t11-CLA treated cultures. Interestingly, while the portion of tVA dose-dependently increased within the cellular lipid fraction, the initially marginal amount of c9,t11-CLA remained unaltered. However, SCD mRNA although abundantly expressed in PBMC was not regulated by tVA. Conclusively, these results suggest that the cytokine reducing effect of tVA in human T cells is independent of c9,t11-CLA, since no bioconversion occurred. Moreover, the data provide evidence that tVA mechanistically acts in a manner similar to c9,t11-CLA.
机译:反刍动物反式脂肪酸疫苗(tVA)可以很好地改变炎症标志物。然而,尚不清楚这些作用是否归因于其内源性部分转化为c9,t11-CLA的作用,已知它具有抗炎特性。我们比较了人类T辅助(Th)细胞中tVA与c9,t11-CLA的细胞因子减少潜力,这是炎症过程中细胞因子产生的主要来源。其次,我们评估了是否在外周血单核细胞(PBMC)中通过硬脂酰辅酶A去饱和酶(SCD)编码的活性将tVA生物转化为c9,t11-CLA,以将细胞内细胞因子测量的结果与转化程度相关。 TVA显着降低了表达IL-2和TNF-α的Th细胞的百分比,但与c9,t11-CLA相比,其降低程度较小,这是在PBMC的变应性刺激后通过流式细胞仪确定的。在tVA和c9,t11-CLA处理的培养物中,用选择性PPARγ拮抗剂T0070907进行的预处理在很大程度上重建了IL-2和TNF-α阳性Th细胞群体。有趣的是,尽管tVA的部分在细胞脂质组分中呈剂量依赖性增加,但最初的边缘量c9,t11-CLA保持不变。然而,SCD mRNA虽然在PBMC中大量表达,但不受tVA的调节。结论是,这些结果表明,由于未发生生物转化,因此在人T细胞中tVA的细胞因子减少作用与c9,t11-CLA无关。而且,这些数据提供了证据,证明tVA以类似于c9,t11-CLA的方式起作用。

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