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首页> 外文期刊>Frontiers in Cellular and Infection Microbiology >Respiratory Syncytial Virus Exacerbates Kidney Damages in IgA Nephropathy Mice via the C5a-C5aR1 Axis Orchestrating Th17 Cell Responses
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Respiratory Syncytial Virus Exacerbates Kidney Damages in IgA Nephropathy Mice via the C5a-C5aR1 Axis Orchestrating Th17 Cell Responses

机译:呼吸道合胞病毒通过C5A-C5AR1轴协调Th17细胞反应加剧IgA肾病小鼠肾脏损伤

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Respiratory viral infections can directly lead to kidney damage such as IgA nephropathy (IgAN), partly due to mucosal immune system dysfunction. Although the activated C5a-C5aR1 axis results in increased Th1 and Th17 frequencies but reduced Treg frequencies in Respiratory syncytial virus (RSV) infection, how this axis affects Th cell disorders in RSV-induced IgAN exacerbation remains unknown. Here, we used a mouse model to dissect the activation of C5a-C5aR1 by RSV and the consequences on the regulation of Th1, Th17 and Treg immune responses in IgA nephropathy. RSV fusion protein was clearly deposited not only in the pulmonary interstitium but also in the glomerulus in RSV-IgAN mice, and RSV infection led to more severe pathological changes in the kidneys in IgAN mice. Blocking the C5a-C5aR1 axis resulted in a decrease in the albumin-to-creatinine ratio, and the attenuation of kidney damage in IgAN and RSV-IgAN mice might be partly attributed to the inhibition of Th cell and cytokine dysfunction. Th1, Th17 and Treg immune responses and their corelative cytokines were disrupted by RSV infection and rescued by C5aR1 inhibition. Moreover, we constructed a coculture system of human mesangial cells and CD4+ T cells and found that RSV infection might lead to CD4+ T cell production via human mesangial cells-enhanced CD4+ T cell proliferation, consequently increasing IL-17 levels. These pathological behaviors were augmented by C5a stimulation and decreased by C5aR1 inhibition. Thus, C5aR1 inhibition alters both kidney damage and Th1, Th17 and Treg cell dysfunction in RSV-induced IgAN exacerbation and locally regulates HMC antigen presentation function in the kidney. Taken together, our data offer profound evidence that blocking the C5a-C5aR1 axis might be a potential therapy for RSV-induced IgAN.
机译:呼吸道病毒感染可以直接导致肾脏损伤,如IgA肾病(IgAN),部分原因是粘膜免疫系统功能障碍。虽然活化的C5A-C5AR1轴导致Th1和Th17的频率增加,但呼吸合胞病毒(RSV)感染中的Treg频率降低,但该轴如何影响RSV诱导的Igan Exacterbation中的细胞紊乱仍然未知。在这里,我们使用小鼠模型通过RSV来描述C5A-C5AR1的激活以及对IgA肾病中Th1,Th17和Th17和Th11和Threg免疫应答的调节的后果。 RSV融合蛋白不仅清楚地沉积在肺动脉间隙中,而且还在RSV-Igan小鼠中的肾小球中,RSV感染导致Igan小鼠肾脏的更严重的病理变化。阻断C5A-C5AR1轴导致白蛋白到肌酐比率的降低,并且IgAn和RSV-Igan小鼠肾脏损伤的衰减可能部分归因于抑制细胞和细胞因子功能障碍。 TH1,TH17和TREG免疫应答及其有助于细胞因子被RSV感染破坏,并通过C5AR1抑制救出。此外,我们构建了人髓细胞和CD4 + T细胞的共培养系统,发现RSV感染可能导致CD4 + T细胞产生通过人体髓细胞增强CD4 + T细胞增殖,从而增加IL-17水平。通过C5a刺激增强这些病理行为,并通过C5AR1抑制减少。因此,C5AR1抑制改变了RSV诱导的IgAn加剧中的肾脏损伤和Th1,Th17和Th117和Th117和Th117和Threg细胞功能障碍,并在肾脏中局部调节HMC抗原呈递功能。我们的数据提供了深刻的证据,即阻断C5A-C5AR1轴可能是RSV诱导的Igan的潜在疗法。

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