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白细胞介素-10/STAT3/信号转导与转录激活因子 3/细胞因子信号转导抑制因子 3 轴参与苯唑硝唑的抗炎作用。

IL-10/STAT3/SOCS3 Axis Is Involved in the Anti-inflammatory Effect of Benznidazole.

机构信息

Facultad de Medicina, Instituto de Investigaciones Biomédicas en Retrovirus y SIDA (INBIRS), CONICET-Universidad de Buenos Aires, Buenos Aires, Argentina.

Facultad de Medicina, Instituto de Investigaciones en Microbiología y Parasitología Médica (IMPaM), CONICET-Universidad de Buenos Aires, Buenos Aires, Argentina.

出版信息

Front Immunol. 2019 Jun 4;10:1267. doi: 10.3389/fimmu.2019.01267. eCollection 2019.

Abstract

Anti-parasitic treatment for Chagas disease mainly relies on benznidazole, which is virtually the only drug available in the market. Besides its anti-parasitic effects, benznidazole has anti-inflammatory properties. In this work we studied the mechanisms involved in the latter, demonstrating the participation of the IL-10/STAT3/SOCS3 pathway. To achieve this goal, the anti-inflammatory properties of benznidazole were studied using an model of cardiomyocyte primary culture stimulated with LPS. LPS increased both SOCS3 expression and STAT3 phosphorylation. The addition of benznidazole increased their expression even further. Specific inhibition of STAT3 precluded this effect, suggesting a role for STAT3 in the increase of SOCS3 expression induced by benznidazole. To assess the participation of SOCS3 in the anti-inflammatory effect of benznidazole, we accomplished specific knockdown of SOCS3 with siRNA. Silencing of SOCS3 in cardiomyocytes precluded the inhibitory effects of benznidazole on TNF-α, IL-6, iNOS expression and NO release. Moreover, in the absence of SOCS3, benznidazole could neither prevent IKK phosphorylation nor IκBα degradation, supporting the notion that SOCS3 is required for the benznidazole-mediated inhibition of the NF-κB pathway. Previously, we demonstrated that IL-10 increases the expression of SOCS3 in cultured cardiomyocytes. Here, we found that benznidazole shows a trend to increased IL-10 expression. To evaluate whether benznidazole increased SOCS3 in an IL-10-dependent manner, cardiomyocytes from IL-10 knockout mice were pre-treated with benznidazole and stimulated with LPS. Benznidazole neither inhibited NO release nor avoid IKK phosphorylation or IκBα degradation, showing that IL-10 is required for benznidazole-mediated inhibition of NF-κB. Moreover, exogenous addition of IL-10 to IL-10 knockout cardiomyocytes restored the inhibitory effect of benznidazole on NO release. The results reported herein show, for the first time, that the IL-10/STAT3/SOCS3 axis is involved in the anti-inflammatory effects of benznidazole. These findings may add up to new therapeutic strategies for chronic Chagas disease given its inflammatory nature.

摘要

抗寄生虫治疗恰加斯病主要依赖于苯并咪唑,这实际上是市场上唯一可用的药物。除了抗寄生虫作用外,苯并咪唑还具有抗炎作用。在这项工作中,我们研究了后者的机制,证明了 IL-10/STAT3/SOCS3 途径的参与。为了实现这一目标,我们使用 LPS 刺激的原代心肌细胞培养模型研究了苯并咪唑的抗炎特性。LPS 增加了 SOCS3 的表达和 STAT3 的磷酸化。苯并咪唑的加入进一步增加了它们的表达。STAT3 的特异性抑制排除了这种作用,表明 STAT3 在苯并咪唑诱导的 SOCS3 表达增加中起作用。为了评估 SOCS3 在苯并咪唑抗炎作用中的参与,我们使用 siRNA 特异性敲低 SOCS3。SOCS3 在心肌细胞中的沉默排除了苯并咪唑对 TNF-α、IL-6、iNOS 表达和 NO 释放的抑制作用。此外,在没有 SOCS3 的情况下,苯并咪唑既不能阻止 IKK 磷酸化,也不能阻止 IκBα 降解,这支持了 SOCS3 是苯并咪唑介导的 NF-κB 途径抑制所必需的观点。之前,我们证明了 IL-10 增加了培养的心肌细胞中 SOCS3 的表达。在这里,我们发现苯并咪唑表现出增加 SOCS3 表达的趋势。为了评估苯并咪唑是否以 IL-10 依赖的方式增加 SOCS3,我们用苯并咪唑预处理 IL-10 敲除小鼠的心肌细胞,然后用 LPS 刺激。苯并咪唑既没有抑制 NO 释放,也没有避免 IKK 磷酸化或 IκBα 降解,表明 IL-10 是苯并咪唑介导的 NF-κB 抑制所必需的。此外,外源性添加 IL-10 到 IL-10 敲除的心肌细胞中恢复了苯并咪唑对 NO 释放的抑制作用。本文报道的结果首次表明,IL-10/STAT3/SOCS3 轴参与了苯并咪唑的抗炎作用。鉴于其炎症性质,这些发现可能为慢性恰加斯病的新治疗策略增添了新的内容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5703/6558013/9de8df95cc4d/fimmu-10-01267-g0001.jpg

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