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Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice

机译:镰状细胞的性状增加了小鼠的红细胞储存溶血和输血后清除

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Background: Transfusion of blood at the limits of approved storage time is associated with lower red blood cell (RBC) post-transfusion recovery and hemolysis, which increases plasma cell-free hemoglobin and iron, proposed to induce endothelial dysfunction and impair host defense. There is noted variability among donors in the intrinsic rate of storage changes and RBC post-transfusion recovery, yet genetic determinants that modulate this process are unclear. Methods: We explore RBC storage stability and post-transfusion recovery in murine models of allogeneic and xenogeneic transfusion using blood from humanized transgenic sickle cell hemizygous mice (Hba^t^m^1^P^a^zHbb^t^m^1^T^o^wTg(HBA-HBBs)41Paz/J) and human donors with a common genetic mutation sickle cell trait (HbAS). Findings: Human and transgenic HbAS RBCs demonstrate accelerated storage time-dependent hemolysis and reduced post-transfusion recovery in mice. The rapid post-transfusion clearance of stored HbAS RBC is unrelated to macrophage-mediated uptake or intravascular hemolysis, but by enhanced sequestration in the spleen, kidney and liver. HbAS RBCs are intrinsically different from HbAA RBCs, with reduced membrane deformability as cells age in cold storage, leading to accelerated clearance of transfused HbAS RBCs by entrapment in organ microcirculation. Interpretation: The common genetic variant HbAS enhances RBC storage dysfunction and raises provocative questions about the use of HbAS RBCs at the limits of approved storage.
机译:背景:在批准的储存时间限制内输血与输血后恢复和溶血作用较低的红细胞(RBC)有关,这会增加血浆中无血红蛋白和铁的含量,被提议诱发内皮功能障碍并损害宿主防御能力。值得注意的是,供体之间内在的存储变化率和输血后RBC恢复率存在差异,但尚不清楚调节该过程的遗传决定因素。方法:我们利用人源化转基因镰状细胞半合子小鼠(Hba ^ t ^ m ^ 1 ^ P ^ a ^ zHbb ^ t ^ m ^ 1 ^ T ^ oTwG(HBA-HBBs)41Paz / J)和具有共同遗传突变镰状细胞性状(HbAS)的人类供体。研究结果:人类和转基因HbAS RBCs证明了加速的储存时间依赖性溶血和减少的小鼠输血后恢复。储存的HbAS RBC的快速输血后清除与巨噬细胞介导的摄取或血管内溶血无关,但与脾,肾和肝中的螯合作用增强有关。 HbAS RBCs与HbAA RBCs本质上不同,随着细胞在冷藏中老化,膜的变形能力降低,从而导致滞留在器官微循环中的HbAS RBCs清除速度加快。解释:常见的遗传变异HbAS会增加RBC的储存功能障碍,并在批准的储存限度内引发有关使用HbAS RBC的挑衅性问题。

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