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IP-10 在 CV-A16 感染早期发挥作用,通过增加 TNF-α 的表达诱导 BBB 破坏,并促进病毒进入中枢神经系统。

IP-10 acts early in CV-A16 infection to induce BBB destruction and promote virus entry into the CNS by increasing TNF-α expression.

机构信息

Department of Pulmonary and Critical Care Medicine, The First People's Hospital of Yunnan Province, Kunming, China.

Department of Pulmonary and Critical Care Medicine, The Affiliated Hospital of Kunming University of Science and Technology, Kunming, Yunnan, China.

出版信息

Front Immunol. 2024 Nov 4;15:1374447. doi: 10.3389/fimmu.2024.1374447. eCollection 2024.

Abstract

The mechanisms underlying pathological changes in the central nervous system (CNS) following Coxsackievirus A16 (CV-A16) infection have not yet been elucidated. IFN-γ-inducible protein-10 (IP-10) is often used as a predictive factor to monitor early virus infection. It has also been reported that IP-10 plays a pivotal role in neuroinflammation. In this study, we aimed to explore the role of IP-10 in the neuropathogenesis of CV-A16 infection. We observed that the level of IP-10, as well as the TLR3-TRIF-TRAF3-TBK1-NF-κB and RIG-I/MDA5-MAVS-TRAFS-TBK1-NF-κB pathways, which are the upstream of IP-10, were significantly elevated during the course of CV-A16 infection. This increase was accompanied by an increase in a series of inflammatory cytokines at different time-points during CV-A16 infection. To determine whether IP-10 influences BBB integrity, we examined junctional complexes. Our results revealed that the expression levels of Claudin5, Occludin, ZO-1 and VE-Cadherin were notably decreased in CV-A16-infected HUVECs, but these indicators were restored in CV-A16-infected HUVECs with Eldelumab treatment. Nevertheless, IP-10 is only a chemokine that primarily traffics CXCR3-positive immune cells to inflammatory sites or promotes the production of inflammatory cytokines. Therefore, the interactions between IP-10 and inflammatory cytokines were evaluated. Our data revealed that IP-10 mediated the production of TNF-α, which was also observed to change the junctional complexes. Moreover, in a suckling mouse model, IP-10 and TNF-α treatments exacerbated clinical symptoms, mortality and pathological changes in the brain of CV-A16-infected mice, but Anti-IP-10 and Anti-TNF-α treatments alleviated these changes. Our data also revealed that IP-10 may be detected early in CV-A16 infection, whereas TNF-α was detected late in CV-A16 infection, and the production of TNF-α was also found to be positively correlated with IP-10. In addition, IP-10 and TNF-α were observed to reduce junctional complexes and enhance virus entry into the CNS. Taken together, this study provides the first evidence that CV-A16 activates the IP-10/TNF-α regulatory axis to cause BBB damage and accelerate the formation of neuroinflammation in infected hosts, which not only provides a new understanding of the neuropathogenesis caused by CV-A16, but also offers a promising target for the development of CV-A16 antiviral drugs.

摘要

柯萨奇病毒 A16(CV-A16)感染后中枢神经系统(CNS)发生病理变化的机制尚未阐明。干扰素-γ诱导蛋白-10(IP-10)通常被用作监测早期病毒感染的预测因子。也有报道称,IP-10 在神经炎症中发挥关键作用。在这项研究中,我们旨在探讨 IP-10 在 CV-A16 感染神经发病机制中的作用。我们观察到,在 CV-A16 感染过程中,IP-10 及其上游的 TLR3-TRIF-TRAF3-TBK1-NF-κB 和 RIG-I/MDA5-MAVS-TRAFS-TBK1-NF-κB 途径的水平均显著升高。这种增加伴随着在 CV-A16 感染的不同时间点一系列炎症细胞因子的增加。为了确定 IP-10 是否影响 BBB 的完整性,我们检查了连接复合物。结果显示,在 CV-A16 感染的 HUVEC 中 Claudin5、Occludin、ZO-1 和 VE-Cadherin 的表达水平明显降低,但在用 Eldelumab 处理后,这些指标在 CV-A16 感染的 HUVEC 中得到恢复。然而,IP-10 只是一种趋化因子,主要将 CXCR3 阳性免疫细胞运输到炎症部位或促进炎症细胞因子的产生。因此,评估了 IP-10 与炎症细胞因子之间的相互作用。我们的数据显示,IP-10 介导 TNF-α 的产生,同时也观察到改变了连接复合物。此外,在乳鼠模型中,IP-10 和 TNF-α 治疗加重了 CV-A16 感染小鼠的临床症状、死亡率和脑内病理变化,但 Anti-IP-10 和 Anti-TNF-α 治疗减轻了这些变化。我们的数据还显示,IP-10 可能在 CV-A16 感染早期被检测到,而 TNF-α 在 CV-A16 感染后期被检测到,并且 TNF-α 的产生也与 IP-10 呈正相关。此外,IP-10 和 TNF-α 被观察到降低了连接复合物并增强了病毒进入中枢神经系统。总之,这项研究首次提供了证据表明,CV-A16 通过激活 IP-10/TNF-α 调节轴引起 BBB 损伤并加速感染宿主中神经炎症的形成,这不仅为 CV-A16 引起的神经发病机制提供了新的认识,而且为开发 CV-A16 抗病毒药物提供了有希望的靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3182/11570546/c20026d662f2/fimmu-15-1374447-g001.jpg

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