首页> 外文期刊>Journal of Surgical Research: Clinical and Laboratory Investigation >Leukoreduction of packed red blood cells attenuates proinflammatory properties of storage-derived microvesicles
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Leukoreduction of packed red blood cells attenuates proinflammatory properties of storage-derived microvesicles

机译:包装红细胞的白核经导衰减储存微泡的促炎特性

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BackgroundLeukoreduction prior to packed red blood cell (pRBC) storage is not a universally accepted practice. Our laboratory has previously shown that microvesicles (MVs) accumulate in pRBC units during storage and play an important role in lung injury after resuscitation. Currently, the effect of leukoreduction on MV formation in stored pRBC units is unknown. In the present study, we investigated the hypothesis that leukoreduction of pRBC units prior to storage would attenuate the production of MVs and decrease pulmonary inflammation after hemorrhage and resuscitation. MethodsLeukoreduced and nonleukoreduced pRBC units were prepared from human donors and C57/Bl6 mice and stored for up to 42?d and 14?d, respectively. At intervals during storage, MVs were isolated from pRBC units, quantified and characterized based on size, morphology, and levels of proinflammatory cytokines. In additional experiments, mice underwent controlled hemorrhage followed by resuscitation with normal saline (NS) with or without equal numbers of MVs isolated from leukoreduced or nonleukoreduced stored mouse pRBC. Histologic lung sections were evaluated for the presence of tissue edema and inflammatory cells. ResultsFor both human and mouse pRBCs, the number of MVs significantly increased throughout the storage period. There were significantly fewer MVs present in leukoreduced units. The average MV size significantly increased over time and was similar between groups. Levels of interleukin 1α?(IL-1α), regulated on activation, normal T cell expressed and secreted (RANTES), and macrophage-derived chemokine (MDC) were lower in MVs from leukoreduced pRBC units as compared with MVs from nonleukoreduced units. Hemorrhaged mice resuscitated with NS with the addition of MV from leukoreduced pRBC demonstrated significantly less pulmonary edema and inflammatory cell recruitment as compared to those resuscitated with NS with the addition of MV from nonleukoreduced pRBC. ConclusionsPrestorage leukoreduction of pRBC units reduces the formation and proinflammatory properties of MV, which in turn decreases lung injury secondary to MV from stored pRBC units after hemorrhage and resuscitation.
机译:Broundyureurection在包装红细胞之前(PRBC)储存不是普遍接受的实践。我们的实验室之前已经表明,在储存期间,微膜(MVS)在PRBC单元中积聚,并在复苏后在肺损伤中发挥重要作用。目前,白核经导对储存PRBC单元MV形成的影响是未知的。在本研究中,我们研究了PRBC单位在储存前的白核经导的假设将衰减出血后MV的生产和减少肺炎和复苏后的肺炎症。 MotieteLeukoRoReduceed和非全身合理的PRBC单元由人供体和C57 / BL6小鼠制备,分别储存最多42℃和14℃。在储存期间的间隔,基于大小,形态和促炎细胞因子的水平,从PRBC单元分离MV。在额外的实验中,接受了受控出血的小鼠,然后用来自白孔诱导的或非lealeukoRed诱导的小鼠PRBC分离的具有或不具有相同数量的MVs的生理盐水(NS)重新刺除。评估组织学肺部的组织水肿和炎性细胞的存在。对于人类和小鼠PRBC来说,MV的数量在整个储存期内显着增加。白金单位存在较少的MVS。随着时间的推移,平均MV尺寸显着增加并且在组之间具有相似。在激活,正常的T细胞上调节的白细胞介素1αα(IL-1α)的水平,表达和分泌的(RANTES)和巨噬细胞衍生的趋化因子(MDC),与来自非全核定律单位的MVS相比,在白金的PRBC单元中较低。随着来自白核经济的PRBC的MV复苏的出血小鼠展示了与NS从非全面的PRBC中添加MV复苏的肺水肿和炎症细胞募集。结论PRBC单位的次核算机降低了MV的形成和促炎特性,其又降低了出血和复苏后储存的PRBC单元中的肺损伤。

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