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首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >FTY720 reactivates cryptococcal granulomas in mice through S1P receptor 3 on macrophages
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FTY720 reactivates cryptococcal granulomas in mice through S1P receptor 3 on macrophages

机译:FTY720 通过巨噬细胞上的 S1P 受体 3 重新激活小鼠的隐球菌肉芽肿

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摘要

FTY720 is a treatment for relapsing remitting multiple sclerosis (MS). It is an analog of sphingosine-1-phosphate (S1P) and targets S1P receptors 1, 3, 4, and 5. Recent reports indicate an association between long-term exposure to FTY720 and cases of cryptococcal infection. Here, we studied the effect of FTY720 and its derivative, BAF312, which only target S1P receptors 1 and 5, in a mouse model of cryptococcal infection. We found that treatment with FTY720, but not with BAF312, led to decreased survival and increased organ burden in mouse cryptococcal granulomas. Both FTY720 and BAF312 caused a profound CD4(+) and CD8(+) T cell depletion in blood and lungs but only treatment with FTY720 led to cryptococcal reactivation. Treatment with FTY720, but not with BAF312, was associated with disorganization of macrophages and with M2 polarization at the granuloma site. In a cell system, FTY720 decreased phagocytosis and production of reactive oxygen species by macrophages, a phenotype recapitulated in the S1pr3(-/-) knockout macrophages. Our results suggest that FTY720 reactivates cryptococcosis from the granuloma through a S1P receptor 3-mediated mechanism and support the rationale for development of more-specific receptor modulators for therapeutic use of MS.
机译:FTY720是一种治疗复发缓解型多发性硬化症(MS)的药物。它是鞘氨醇-1-磷酸 (S1P) 的类似物,靶向 S1P 受体 1、3、4 和 5。最近的报告表明,长期暴露于FTY720与隐球菌感染病例之间存在关联。在这里,我们研究了 FTY720 及其衍生物 BAF312 在隐球菌感染小鼠模型中的作用,BAF312 仅靶向 S1P 受体 1 和 5。我们发现,用FTY720治疗,而不是用BAF312治疗,导致小鼠隐球菌肉芽肿的存活率降低和器官负荷增加。FTY720 和 BAF312 都会导致血液和肺部的 CD4(+) 和 CD8(+) T 细胞耗竭,但仅用 FTY720 治疗会导致隐球菌再激活。用 FTY720 治疗,而不是用 BAF312 治疗,与巨噬细胞的紊乱和肉芽肿部位的 M2 极化有关。在细胞系统中,FTY720 减少了巨噬细胞的吞噬作用和活性氧的产生,巨噬细胞是 S1pr3(-/-) 敲除巨噬细胞中概括的表型。我们的结果表明,FTY720 通过 S1P 受体 3 介导的机制重新激活肉芽肿中的隐球菌病,并支持开发用于治疗 MS 的更具特异性的受体调节剂的基本原理。

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