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鉴定 miR-29a 作为牛传染性块状皮肤病病毒暴露的新型生物标志物。

Identification of miR-29a as a novel biomarker for lumpy skin disease virus exposure in cattle.

机构信息

National Centre for Veterinary Type Cultures, ICAR-National Research Centre on Equines, Hisar, India.

Livestock Research Station, Rajasthan University of Veterinary and Animal Sciences, Nohar, Rajasthan, India.

出版信息

Virulence. 2024 Dec;15(1):2324711. doi: 10.1080/21505594.2024.2324711. Epub 2024 Mar 25.

Abstract

Micro RNAs (miRNAs) have been implicated in the regulation of maturation, proliferation, differentiation, and activation of immune cells. In this study, we demonstrated that miR-29a antagonizes IFN-γ production at early times post-LSDV infection in cattle. miR-29a was predicted to target upstream IFN-γ regulators, and its inhibition resulted in enhanced IFN-γ production in sensitized peripheral blood mononuclear cells (PBMCs). Further, stimulation of PBMCs with LSDV antigen exhibited lower levels of miR-29a, concomitant with a potent cell-mediated immune response (CMI), characterized by an increase in LSDV-specific CD8+ T cell counts and enhanced levels of IFN-γ, which eventually facilitated virus clearance. In addition, a few immunocompromised cattle (developed secondary LSDV infection at ~ 6 months) that failed to mount a potent cell-mediated immune response, were shown to maintain higher miR-29a levels. Furthermore, as compared to the sensitized crossbred cattle, PBMCs from sensitized Rathi (a native Indian breed) animals exhibited lower levels of miR-29a along with an increase in CD8+ T cell counts and enhanced levels of IFN-γ. Finally, we analysed that a ≥ 60% decrease in miR-29a expression levels in the PBMCs of sensitized cattle correlated with a potent CMI response. In conclusion, miR-29a expression is involved in antagonizing the IFN-γ response in LSDV-infected cattle and may serve as a novel biomarker for the acute phase of LSDV infection, as well as predicting the functionality of T cells in sensitized cattle. In addition, Rathi cattle mount a more potent CMI response against LSDV than crossbred cattle.

摘要

微小 RNA(miRNA)参与了免疫细胞的成熟、增殖、分化和激活的调控。在这项研究中,我们证明了 miR-29a 在 LSDV 感染后早期拮抗 IFN-γ 的产生。miR-29a 被预测靶向 IFN-γ 的上游调节因子,其抑制导致致敏外周血单核细胞(PBMC)中 IFN-γ 的产生增强。此外,用 LSDV 抗原刺激 PBMC 表现出较低水平的 miR-29a,同时伴有强烈的细胞介导的免疫反应(CMI),特征是 LSDV 特异性 CD8+T 细胞计数增加和 IFN-γ 水平增强,最终促进病毒清除。此外,一些免疫功能低下的牛(在大约 6 个月时发展为 LSDV 二次感染)未能产生强烈的细胞介导免疫反应,表现出维持较高 miR-29a 水平的能力。此外,与致敏的杂交牛相比,致敏的拉蒂(印度本土品种)动物的 PBMC 表现出较低水平的 miR-29a,同时 CD8+T 细胞计数增加和 IFN-γ 水平增强。最后,我们分析了致敏牛的 PBMC 中 miR-29a 表达水平降低≥60%与强烈的 CMI 反应相关。总之,miR-29a 的表达参与了 LSDV 感染牛中 IFN-γ 反应的拮抗作用,并且可能作为 LSDV 感染急性期的新型生物标志物,以及预测致敏牛中 T 细胞的功能。此外,与杂交牛相比,拉蒂牛对 LSDV 产生更强的 CMI 反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24ac/10965105/b4e11dc40a8f/KVIR_A_2324711_F0001_B.jpg

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