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Mac1+/Gr1+ cells contribute to transfusion-related acute lung injury

机译:Mac1 + / Gr1 +细胞导致与输血相关的急性肺损伤

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Transfusion-related acute lung injury (TRALI) is a serious complication associated with blood transfusion and can cause transfusion associated fatalities. Both antibody dependent and non-dependent mechanisms are involved in TRALI, as proposed over the past years. Nonetheless, many details of the immune cells involved in TRALI, particularly the Mac1+/Gr1+ cells from donors, are not fully understood yet. Here we used an in vitro transwell system and a mouse model to study the role of donor leukocytes, present in the donor material, in the occurrence of TRALI reactions. We found that there is a number of immature myeloid cells with Mac1+/Gr1+ phenotype present in the red blood cell (RBC) products, when prepared by regular methods. We found that murine Mac1+/Gr1+ cells from stored RBC products display an elevated MHC I and CD40 expression, as well as an enhanced tumor necrosis factor alpha(TNF-α), interlukin-6(IL-6) and macrophage inflammatory protein 2 (MIP-2) secretion. When tested in a transwell endothelial migration assay, Mac1+/Gr1+ cells showed a significant capability to cross the endothelial barrier. In vivo investigation demonstrated that compared to the purified RBC transfusion, more murine Mac1+/Gr1+ cells from the regular method produced RBC sequestered in the lung, which associated to shorter survival. Taken together, these data suggest that donor derived Mac1+/Gr1+ cells can play a significant role in TRALI reactions, and that reduction of Mac1+/Gr1+ cell number from RBC products is necessary to control the severity of TRALI reactions in clinic.
机译:与输血有关的急性肺损伤(TRALI)是与输血有关的严重并发症,并可能导致与输血有关的死亡。如过去几年所提出的,抗体依赖性和非依赖性机制都参与TRALI。但是,尚未完全了解涉及TRALI的免疫细胞的许多细节,尤其是来自供体的Mac1 + / Gr1 +细胞。在这里,我们使用了体外转运系统和小鼠模型来研究供体材料中存在的供体白细胞在TRALI反应发生中的作用。我们发现通过常规方法制备时,在红细胞(RBC)产品中存在许多具有Mac1 + / Gr1 +表型的未成熟髓样细胞。我们发现,来自储存的RBC产品的鼠Mac1 + / Gr1 +细胞显示出升高的MHC I和CD40表达,以及增强的肿瘤坏死因子α(TNF-α),白细胞介素6(IL-6)和巨噬细胞炎症蛋白2( MIP-2)分泌。当在Transwell内皮迁移试验中进行测试时,Mac1 + / Gr1 +细胞表现出了强大的穿越内皮屏障的能力。体内研究表明,与纯化的RBC输血相比,常规方法产生的更多鼠类Mac1 + / Gr1 +细胞在肺中螯合了RBC,这与较短的生存期相关。综上所述,这些数据表明,供体来源的Mac1 + / Gr1 +细胞可以在TRALI反应中发挥重要作用,而减少RBC产品中Mac1 + / Gr1 +细胞的数量对于控制临床TRALI反应的严重性是必要的。

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