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Glioma‐derived macrophage migration inhibitory factor (MIF) promotes mast cell recruitment in a STAT5‐dependent manner

机译:胶质瘤来源的巨噬细胞迁移抑制因子(MIF)以STAT5依赖性方式促进肥大细胞募集

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摘要

Recently, glioma research has increased its focus on the diverse types of cells present in brain tumors. We observed previously that gliomas are associated with a profound accumulation of mast cells (MCs) and here we investigate the underlying mechanism.Gliomas express a plethora of chemoattractants. First, we demonstrated pronounced migration of human MCs toward conditioned medium from cultures of glioma cell lines. Subsequent cytokine array analyses of media from cells, cultured in either serum‐containing or ‐free conditions, revealed a number of candidates which were secreted in high amounts in both cell lines. Among these, we then focused on macrophage migration inhibitory factor (MIF), which has been reported to be pro‐inflammatory and ‐tumorigenic. Infiltration of MCs was attenuated by antibodies that neutralized MIF. Moreover, a positive correlation between the number of MCs and the level of MIF in a large cohort of human glioma tissue samples was observed.Further, both glioma‐conditioned media and purified MIF promoted differential phosphorylation of a number of signaling molecules, including signal transducer and activator of transcription 5 (STAT5), in MCs. Inhibition of pSTAT5 signaling significantly attenuated the migration of MCs toward glioma cell‐conditioned medium shown to contain MIF. In addition, analysis of tissue microarrays (TMAs) of high‐grade gliomas revealed a direct correlation between the level of pSTAT5 in MCs and the level of MIF in the medium.In conclusion, these findings indicate the important influence of signaling cascades involving MIF and STAT5 on the recruitment of MCs to gliomas.
机译:近来,神经胶质瘤研究已将其注意力集中在脑肿瘤中存在的多种细胞上。我们以前观察到神经胶质瘤与肥大细胞(MCs)的大量积累有关,在这里我们研究其潜在机制。神经胶质瘤表达过多的化学吸引剂。首先,我们证明了神经胶质瘤细胞系培养物中人MC向条件培养基的明显迁移。随后在含血清或无血清条件下培养的细胞培养基对细胞因子进行阵列分析,发现大量候选物在两种细胞系中都大量分泌。在这些方法中,我们重点研究了巨噬细胞迁移抑制因子(MIF),据报道它具有促炎性和致瘤性。中和MIF的抗体减弱了MC的浸润。此外,在一大批人类神经胶质瘤组织样本中观察到MC数量与MIF水平呈正相关。此外,神经胶质瘤条件培养基和纯化的MIF均可促进许多信号分子(包括信号转导子)的差异磷酸化和转录激活因子5(STAT5),在MC中。 pSTAT5信号的抑制作用显着减弱了MC向胶质瘤细胞条件培养基(包含MIF)的迁移。此外,对高级别神经胶质瘤组织微阵列(TMA)的分析显示,MC中pSTAT5的水平与培养基中MIF的水平之间存在直接相关性。总而言之,这些发现表明涉及MIF和MIF的信号级联反应的重要影响。 STAT5招募脑胶质瘤的MC。

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