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CCL5 derived from platelets increases megakaryocyte proplatelet formation

机译:源自血小板的CCL5增加了巨核细胞丙替衣形成

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摘要

In times of physiological stress, platelet count can transiently rise. What initiates this reactive thrombocytosis is poorly understood. Intriguingly, we found that treating megakaryocytes (MKs) with the releasate from activated platelets increased proplatelet production by 47%. Platelets store inflammatory cytokines, including the chemokine ligand 5 (CCL5, RANTES); after TRAP activation, platelets release over 25 ng/mL CCL5. We hypothesized that CCL5 could regulate platelet production by binding to its receptor, CCR5, on MKs. Maraviroc (CCR5 antagonist) or CCL5 immunodepletion diminished 95% and 70% of the effect of platelet releasate, respectively, suggesting CCL5 derived from platelets is sufficient to drive increased platelet production through MK CCR5. MKs cultured with recombinant CCL5 increased proplatelet production by 50% and had significantly higher ploidy. Pretreating the MK cultures with maraviroc prior to exposure to CCL5 reversed the augmented proplatelet formation and ploidy, suggesting that CCL5 increases MK ploidy and proplatelet formation in a CCR5-dependent manner. Interrogation of the Akt signaling pathway suggested that CCL5/CCR5 may influence proplatelet production by suppressing apoptosis. In an in vivo murine acute colitis model, platelet count significantly correlated with inflammation whereas maraviroc treatment abolished this correlation. We propose that CCL5 signaling through CCR5 may increase platelet counts during physiological stress.
机译:在生理压力的时候,血小板计数可以瞬时上升。这种反应性血小板症的启动是什么意识到的。有趣的是,我们发现将巨核细胞(MKS)与活性血小板的释放增加了47%的丙型型产量增加了47%。血小板储存炎性细胞因子,包括趋化性配体5(CCl5,Rantes);在捕获激活后,血小板释放超过25ng / ml CCl5。我们假设CCL5可以通过在MKS上与其受体CCR5结合来调节血小板生产。 Maraviroc(CCR5拮抗剂)或CCL5免疫凝固分别减少了95%和70%的血小板释放效果,表明源自血小板的CCL5足以通过MK CCR5驱动增加的血小板产生。用重组CCL5培养的MKS培养丙粉型产量增加50%,倍增性较高。在暴露于CCL5之前用马拉维毒进行预处理MK培养物反转增强丙替衣形成和倍增性,表明CCL5以CCR5依赖性方式增加了MK倍率和丙替塞形成。 AKT信号通路的询问表明CCL5 / CCR5可以通过抑制细胞凋亡来影响丙曲线产生。在体内鼠急性结肠炎模型中,血小板计数与炎症明显相关,而马拉维病治疗废除了这种相关性。我们提出通过CCR5的CCL5信号传导可以增加生理压力期间的血小板计数。

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