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首页> 外文期刊>Infection and immunity >B Cells Modulate Systemic Responses to Pneumocystis murina Lung Infection and Protect On-Demand Hematopoiesis via T Cell-Independent Innate Mechanisms when Type I Interferon Signaling Is Absent
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B Cells Modulate Systemic Responses to Pneumocystis murina Lung Infection and Protect On-Demand Hematopoiesis via T Cell-Independent Innate Mechanisms when Type I Interferon Signaling Is Absent

机译:当I型干扰素信号缺失时,B细胞调节对鼠莫氏肺孢子虫肺感染的系统反应,并通过独立于T细胞的先天机制保护按需造血。

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HIV infection results in a complex immunodeficiency due to loss of CD4+ T cells, impaired type I interferon (IFN) responses, and B cell dysfunctions causing susceptibility to opportunistic infections such as Pneumocystis murina pneumonia and unexplained comorbidities, including bone marrow dysfunctions. Type I IFNs and B cells critically contribute to immunity to Pneumocystis lung infection. We recently also identified B cells as supporters of on-demand hematopoiesis following Pneumocystis infection that would otherwise be hampered due to systemic immune effects initiated in the context of a defective type I IFN system. While studying the role of type I IFNs in immunity to Pneumocystis infection, we discovered that mice lacking both lymphocytes and type I IFN receptor (IFrag?/?) developed progressive bone marrow failure following infection, while lymphocyte-competent type I IFN receptor-deficient mice (IFNAR?/?) showed transient bone marrow depression and extramedullary hematopoiesis. Lymphocyte reconstitution of lymphocyte-deficient IFrag?/? mice pointed to B cells as a key player in bone marrow protection. Here we define how B cells protect on-demand hematopoiesis following Pneumocystis lung infection in our model. We demonstrate that adoptive transfer of B cells into IFrag?/? mice protects early hematopoietic progenitor activity during systemic responses to Pneumocystis infection, thus promoting replenishment of depleted bone marrow cells. This activity is independent of CD4+ T cell help and B cell receptor specificity and does not require B cell migration to bone marrow. Furthermore, we show that B cells protect on-demand hematopoiesis in part by induction of interleukin-10 (IL-10)- and IL-27-mediated mechanisms. Thus, our data demonstrate an important immune modulatory role of B cells during Pneumocystis lung infection that complement the modulatory role of type I IFNs to prevent systemic complications.
机译:HIV感染会导致CD4 + T细胞丢失,I型干扰素(IFN)反应受损以及B细胞功能异常,从而导致复杂的免疫缺陷,从而导致易感性感染(如穆氏肺孢子虫肺炎)和原因不明的合并症,包括骨髓功能障碍。 I型IFN和B细胞对肺囊虫肺部感染的免疫至关重要。最近,我们还确定了B细胞是肺囊虫感染后按需造血的支持者,否则由于在I型干扰素系统缺陷的情况下引发的全身免疫作用,B细胞会受到阻碍。在研究I型IFN在抵抗肺孢菌感染中的作用时,我们发现缺乏淋巴细胞和I型IFN受体(IFrag?/?)的小鼠在感染后会发展为进行性骨髓衰竭,而淋巴细胞却具有I型IFN受体缺陷。小鼠(IFNARα/β)显示出短暂的骨髓抑制和髓外造血作用。缺乏淋巴细胞的IFrag?/?的淋巴细胞重建小鼠指出B细胞是骨髓保护的关键参与者。在这里,我们定义了在我们的模型中,B细胞如何在肺囊虫肺部感染后保护按需造血功能。我们证明了B细胞过继转移到IFrag?/?中。小鼠在对肺囊虫感染的全身反应过程中保护了早期造血祖细胞的活性,从而促进了贫血骨髓细胞的补充。此活性独立于CD4 + T细胞的帮助和B细胞受体的特异性,不需要B细胞迁移到骨髓。此外,我们表明,B细胞通过诱导白介素10(IL-10)和IL-27介导的机制部分保护按需造血功能。因此,我们的数据表明肺孢子虫肺部感染期间B细胞具有重要的免疫调节作用,可补充I型IFN的调节作用以预防系统性并发症。

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