通过ROS/NLRP3信号通路改变先天免疫应答,hMSCs治疗可减轻小鼠疱疹病毒-68 (MHV-68)肺炎。

IF 6.3 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Aiping Qin, Xiao-Juan Wang, Jijun Fu, Ao Shen, Xiaotao Huang, Zhida Chen, Huiting Wu, Yu Jiang, Qian Wang, Fei Chen, Andy Peng Xiang, Xiyong Yu
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引用次数: 2

摘要

免疫功能低下的个体特别容易受到病毒感染和再激活,尤其是内源性疱疹病毒,如eb病毒(EBV),它是致癌性γ -疱疹病毒的一员,通常与肺炎有关,因此发病率和死亡率很高。在人类和动物致癌性γ -疱疹病毒的研究中,小鼠γ -疱疹病毒-68 (MHV-68)模型已被应用,因为它可以在免疫功能低下的小鼠中诱导肺炎。在临床前模型中,间充质干细胞(MSC)治疗已显示出对肺炎以及其他形式的急性肺损伤的治疗潜力。在这项研究中,我们旨在探讨人骨髓源性间充质干细胞(hMSC)治疗mhv -68诱导的肺炎的疗效和潜在机制。我们发现静脉注射hMSCs可显著减少肺损伤,减少炎症介质,并在某种程度上抑制MHV-68的复制。此外,hMSCs处理可以调节先天免疫反应,诱导巨噬细胞从M1表型向M2表型极化,显著改变白细胞浸润,减少肺纤维化。我们通过共培养系统的研究结果表明,hMSCs可以有效地减少炎症相关因子的分泌,诱导巨噬细胞极化的改变,这与体内实验结果一致。进一步研究发现,在体内和体外,hMSCs处理抑制了巨噬细胞ROS/NLRP3信号通路的激活。此外,选择性NLRP3抑制剂MCC950已被证明可以有效减少ROS的产生,从而减轻MHV-68诱导的炎症。总之,我们的工作表明,hMSCs可以有效地保护小鼠免受致命的MHV-68肺炎,这可能为对抗人类ebv相关肺炎的策略提供新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

hMSCs treatment attenuates murine herpesvirus-68 (MHV-68) pneumonia through altering innate immune response via ROS/NLRP3 signaling pathway.

hMSCs treatment attenuates murine herpesvirus-68 (MHV-68) pneumonia through altering innate immune response via ROS/NLRP3 signaling pathway.

hMSCs treatment attenuates murine herpesvirus-68 (MHV-68) pneumonia through altering innate immune response via ROS/NLRP3 signaling pathway.

hMSCs treatment attenuates murine herpesvirus-68 (MHV-68) pneumonia through altering innate immune response via ROS/NLRP3 signaling pathway.

Immunocompromised individuals are particularly vulnerable to viral infections and reactivation, especially endogenous herpes viruses such as Epstein-Barr virus (EBV), a member of oncogenic gamma-herpesviruses, which are commonly linked to pneumonia and consequently significant morbidity and mortality. In the study of human and animal oncogenic gammaherpesviruses, the murine gamma-herpesviruses-68 (MHV-68) model has been applied, as it can induce pneumonia in immunocompromised mice. Mesenchymal stem cell (MSC) treatment has demonstrated therapeutic potential for pneumonia, as well as other forms of acute lung injury, in preclinical models. In this study, we aim to investigate the therapeutic efficacy and underlying mechanisms of human bone marrow-derived MSC (hMSC) on MHV-68-induced pneumonia. We found that intravenous administration of hMSCs significantly reduced lung damages, diminished inflammatory mediators and somehow inhibited MHV-68 replication. Furthermore, hMSCs treatment can regulate innate immune response and induce macrophage polarization from M1 to M2 phenotype, could significantly alter leukocyte infiltration and reduce pulmonary fibrosis. Our findings with co-culture system indicated that hMSCs effectively reduced the secretion of of inflammation-related factors and induced a shift in macrophage polarization, consistent with in vivo results. Further investigations revealed that hMSCs treatment suppressed the activation of macrophage ROS/NLRP3 signaling pathway in vivo and in vitro. Moreover, administration of MCC950, a selective NLRP3 inhibitor has been shown to effectively reduce ROS production and subsequently alleviate inflammation induced by MHV-68. Taken together, our work has shown that hMSCs can effectively protect mice from lethal MHV-68 pneumonia, which may throw new light on strategy for combating human EBV-associated pneumonia.

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