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Trem2/Syk/PI3K axis contributes to the host protection against Toxoplasma gondii-induced adverse pregnancy outcomes via modulating decidual macrophages

机译:Trem2/Syk/PI3K 轴通过调节蜕膜巨噬细胞有助于宿主对弓形虫诱导的不良妊娠结局产生保护作用

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摘要

Decidual macrophages residing at the maternal-fetal interface have been recognized as pivotal factors for maintaining normal pregnancy; however, they are also key target cells of Toxoplasma gondii (T. gondii) in the pathology of T. gondii-induced adverse pregnancy. Trem2, as a functional receptor on macrophage surface, recognizes and binds various kinds of pathogens. The role and underlying mechanism of Trem2 in T. gondii infection remain elusive. In the present study, we found that T. gondii infection downregulated Trem2 expression and that Trem2-/- mice exhibited more severe adverse pregnancy outcomes than wildtype mice. We also demonstrated that T. gondii infection resulted in increased decidual macrophages, which were significantly reduced in the Trem2-/- pregnant mouse model as compared to wildtype control animals. We further described the inhibited proliferation, migration, and invasion functions of trophoblast cell by T. gondii antigens through macrophages as an "intermediate bridge", while this inhibition can be rescued by Trem2 agonist HSP60. Concurrently, Trem2 deficiency in bone marrow-derived macrophages (BMDMs) heightened the inhibitory effect of TgAg on the migration and invasion of trophoblast cells, accompanied by higher pro-inflammatory factors (IL-1β, IL-6 and TNF-α) but a lower chemokine (CXCL1) in T. gondii antigens-treated BMDMs. Furthermore, compelling evidence from animal models and in vitro cell experiments suggests that T. gondii inhibits the Trem2-Syk-PI3K signaling pathway, leading to impaired function of decidual macrophages. Therefore, our findings highlight Trem2 signaling as an essential pathway by which decidual macrophages respond to T. gondii infection, suggesting Trem2 as a crucial sensor of decidual macrophages and potential therapeutic target in the pathology of T. gondii-induced adverse pregnancy.
机译:驻留在母胎界面的蜈花巨噬细胞已被公认为维持正常妊娠的关键因素;然而,它们也是刚地弓形虫 (T. gondii) 在刚地弓形虫诱导的不良妊娠病理中的关键靶细胞。Trem2 作为巨噬细胞表面的功能性受体,可识别并结合各种病原体。Trem2 在刚地弓形虫感染中的作用和潜在机制仍然难以捉摸。在本研究中,我们发现刚地弓形虫感染下调了 Trem2 表达,并且 Trem2-/- 小鼠比野生型小鼠表现出更严重的不良妊娠结局。我们还证明,弓形虫感染导致蜕膜巨噬细胞增加,与野生型对照动物相比,在 Trem2 - / - 妊娠小鼠模型中巨噬细胞显著减少。我们进一步描述了刚地弓形虫抗原通过巨噬细胞抑制滋养层细胞的增殖、迁移和侵袭功能作为“中间桥”,而这种抑制可以被 Trem2 激动剂 HSP60 挽救。同时,骨髓来源的巨噬细胞 (BMDMs) 中的 Trem2 缺陷增强了 TgAg 对滋养层细胞迁移和侵袭的抑制作用,伴有较高的促炎因子 (IL-1β 、 IL-6 和 TNF-α) 但趋化因子 (CXCL1) 较低 在弓形虫抗原处理的 BMDMs 中。此外,来自动物模型和体外细胞实验的令人信服的证据表明,T.gondii 抑制 Trem2-Syk-PI3K 信号通路,导致蜕膜巨噬细胞功能受损。因此,我们的研究结果强调 Trem2 信号转导是蜕膜巨噬细胞对弓形虫感染做出反应的重要途径,表明 Trem2 是蜕膜巨噬细胞的关键传感器和弓形虫诱导的不良妊娠病理学中的潜在治疗靶点。

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