首页> 美国卫生研究院文献>Journal of Leukocyte Biology >Stromal-derived IL-6 alters the balance of myeloerythroid progenitors during Toxoplasma gondii infection
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Stromal-derived IL-6 alters the balance of myeloerythroid progenitors during Toxoplasma gondii infection

机译:刚体弓形虫感染过程中基质衍生的IL-6改变骨髓红系祖细胞的平衡。

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摘要

Inflammation alters hematopoiesis, often by decreasing erythropoiesis and enhancing myeloid output. The mechanisms behind these changes and how the BM stroma contributes to this process are active areas of research. In this study, we examine these questions in the setting of murine Toxoplasma gondii infection. Our data reveal that infection alters early myeloerythroid differentiation, blocking erythroid development beyond the Pre MegE stage, while expanding the GMP population. IL-6 was found to be a critical mediator of these differences, independent of hepcidin-induced iron restriction. Comparing the BM with the spleen showed that the hematopoietic response was driven by the local microenvironment, and BM chimeras demonstrated that radioresistant cells were the relevant source of IL-6 in vivo. Finally, direct ex vivo sorting revealed that VCAM+CD146lo BM stromal fibroblasts significantly increase IL-6 secretion after infection. These data suggest that BMSCs regulate the hematopoietic changes during inflammation via IL-6.
机译:炎症通常通过减少红细胞生成并增加髓样输出而改变造血功能。这些变化背后的机制以及BM基质如何促成这一过程是研究的活跃领域。在这项研究中,我们在鼠弓形虫感染的环境中研究了这些问题。我们的数据显示,感染会改变早期的骨髓红系分化,阻止MegE前期以后的红系发育,同时扩大GMP人群。发现IL-6是这些差异的关键介体,独立于铁调素诱导的铁限制。将BM与脾脏进行比较表明,造血反应是由局部微环境驱动的,而BM嵌合体则表明,抗辐射细胞是体内IL-6的相关来源。最后,直接离体分选显示,VCAM + CD146 lo BM基质成纤维细胞可显着增加感染后的IL-6分泌。这些数据表明BMSC通过IL-6调节炎症过程中的造血变化。

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