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Mast Cells Exert Effects Outside the Central Nervous System to Influence Experimental Allergic Encephalomyelitis Disease Course

机译:肥大细胞在中枢神经系统外发挥作用,影响实验性变应性脑脊髓炎疾病进程

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Previous studies using mast cell-deficient mice (W/Wv) revealed that mast cells influence disease onset and severity of experimental allergic/autoimmune encephalomyelitis (EAE), the murine model for multiple sclerosis. The mast cell populations of these mice can be restored by transferring bone marrow-derived mast cells (BMMCs). Studies using the W/Wv reconstitution model have lead to major advances in our understanding of mast cell roles in vivo. However, despite its common use, details regarding the sites and kinetics of mast cell repopulation have remained largely uncharacterized. In this study, we examined the kinetics and tissue distribution of green fluorescent protein+ BMMCs in reconstituted W/Wv mice to identify sites of mast cell influence in EAE. Reconstitution of naive animals with BMMCs does not restore mast cell populations to all organs, notably the brain, spinal cord, lymph nodes, and heart. Despite the absence of mast cells in the CNS, reconstituted mice exhibit an EAE disease course equivalent to that induced in wild-type mice. Mast cells are found adjacent to T cell-rich areas of the spleen and can migrate to the draining lymph node after disease induction. These data reveal that mast cells can act outside the CNS to influence EAE, perhaps by affecting the function of autoreactive lymphocytes.
机译:以前使用肥大细胞缺陷小鼠(W / Wv)进行的研究表明,肥大细胞会影响疾病的发作和实验性变应性/自身免疫性脑脊髓炎(EAE)的病情,这是多发性硬化症的小鼠模型。这些小鼠的肥大细胞群可以通过转移骨髓来源的肥大细胞(BMMC)来恢复。使用W / Wv重构模型的研究已导致我们对体内肥大细胞作用的理解有了重大进展。然而,尽管其被普遍使用,但有关肥大细胞重新聚集的位点和动力学的细节仍未完全描述。在这项研究中,我们检查了重组W / Wv小鼠中绿色荧光蛋白+ BMMC的动力学和组织分布,以确定在EAE中肥大细胞影响的部位。用BMMC复原幼稚动物不能使肥大细胞种群恢复到所有器官,特别是大脑,脊髓,淋巴结和心脏。尽管CNS中不存在肥大细胞,但重组小鼠仍表现出与野生型小鼠相同的EAE病程。肥大细胞位于脾脏T细胞富集区域附近,在诱发疾病后可迁移至引流淋巴结。这些数据表明,肥大细胞可以在中枢神经系统外部起作用,从而可能通过影响自身反应性淋巴细胞的功能来影响EAE。

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