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碲化亚铜化合物 AS101 的抗炎作用与调节 NFkappaB 信号通路和诱导巨噬细胞一氧化氮有关。

The anti-inflammatory effects of the tellurium redox modulating compound, AS101, are associated with regulation of NFkappaB signaling pathway and nitric oxide induction in macrophages.

机构信息

C,A,I,R, Institute, The Safdiè AIDS and Immunology Research Center, The Mina & Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

J Inflamm (Lond). 2010 Jan 20;7(1):3. doi: 10.1186/1476-9255-7-3.

Abstract

BACKGROUND

LPS-activated macrophages produce mediators which are involved in inflammation and tissue injury, and especially those associated with endotoxic shock. The non toxic tellurium compound ammonium tri-chloro(dioxoethylene-O,O'-)tellurate, AS101, has been recently shown to exert profound anti-inflammatory properties in animal models, associated with its Te(IV) redox chemistry. This study explores the anti-inflammatory properties of AS101 with respect to modulation of inflammatory cytokines production and regulation of iNOS transcription and expression in activated macrophages via targeting the NFkB complex.

RESULTS

AS101 decreased production of IL-6 and in parallel down-regulated LPS-induced iNOS expression and NO secretion by macrophages. AS101 reduced IkB phosphorylation and degradation, and reduced NFkB nuclear translocalization, albeit these effects were exerted at different kinetics. Chromatin immunoprecipitation assays showed that AS101 treatment attenuated p50-subunit ability to bind DNA at the NFkB consensus site in the iNOS promotor following LPS induction.

CONCLUSIONS

Besides AS101, the investigation of therapeutic activities of other tellurium(IV) compounds is scarce in the literature, although tellurium is the fourth most abundant trace element in the human body. Since IKK and NFkB may be regulated by thiol modifications, we may thus envisage, inview of our integrated results, that Te(IV) compounds, may have important roles in thiol redox biological activity in the human body and represent a new class of anti-inflammatory compounds.

摘要

背景

脂多糖激活的巨噬细胞产生参与炎症和组织损伤的介质,特别是与内毒素休克相关的介质。新型无毒碲化合物三氯(二氧代乙烯-O,O'-)亚碲酸铵(AS101)最近在动物模型中显示出强大的抗炎特性,与其 Te(IV)氧化还原化学有关。本研究探讨了 AS101 通过靶向 NFkB 复合物调节炎症细胞因子产生和调节激活巨噬细胞中 iNOS 转录和表达的抗炎特性。

结果

AS101 降低了 IL-6 的产生,并且平行地下调了 LPS 诱导的巨噬细胞中 iNOS 表达和 NO 分泌。AS101 减少了 IkB 的磷酸化和降解,并减少了 NFkB 的核易位,尽管这些作用的发挥存在不同的动力学。染色质免疫沉淀试验表明,AS101 处理减弱了 LPS 诱导后 iNOS 启动子中 NFkB 共有序列处 p50 亚基与 DNA 的结合能力。

结论

除了 AS101 之外,文献中关于其他碲(IV)化合物治疗活性的研究很少,尽管碲是人体中第四丰富的微量元素。由于 IKK 和 NFkB 可能受到巯基修饰的调节,因此我们可以根据我们的综合结果推测,Te(IV)化合物可能在人体的硫醇氧化还原生物学活性中具有重要作用,并代表一类新的抗炎化合物。

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