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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A novel role for C3 in antibody-induced red blood cell clearance and antigen modulation.
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A novel role for C3 in antibody-induced red blood cell clearance and antigen modulation.

机译:C3在抗体诱导的红细胞清除和抗原调节中的新作用。

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Hemolytic transfusion reactions (HTRs) due to incompatible red blood cell (RBC) transfusions are a leading cause of transfusion associated death. Although many transfused incompatible RBCs are cleared, some remain in circulation despite the presence of RBC-specific antibodies, potentially due to "antigen modulation." With a goal of better understanding incompatible RBC clearance, we generated a murine model with RBC-specific expression of a clinically significant human antigen (KEL2) known to be involved in antigen modulation as well as in HTRs. Wild-type (WT) recipients transfused with transgenic KEL2 RBCs generated anti-KEL glycoprotein alloantibodies, which fixed complement, led to intravascular hemolysis, and resulted in decreased levels of KEL2 antigen detectable on cells remaining in circulation. Antigen modulation did not appear to solely reflect removal of RBCs with higher antigen expression, because cells continued to display antigen modulation in the absence of significant clearance. Recipients genetically lacking complement exhibited lesser degrees of incompatible RBC clearance and antigen modulation in comparison with WT or FcγR knock-out (KO) animals, suggesting a role for complement in RBC clearance. In summary, this HTR model may serve as a platform to test strategies to downmodulate antigen and inhibit incompatible RBC clearance, thus potentially mitigating transfusion dangers.
机译:由于不相容的红细胞(RBC)输血引起的溶血性输血反应(HTR)是与输血相关的死亡的主要原因。尽管清除了许多不兼容的输血RBC,但尽管存在RBC特异性抗体,但仍有一些仍在循环中,这可能是由于“抗原调节”所致。为了更好地了解不兼容的RBC清除,我们生成了具有RBC特异性表达的临床上重要的人类抗原(KEL2)的鼠模型,已知该抗原与抗原调节以及HTR相关。用转基因KEL2 RBC输注的野生型(WT)受体产生抗KEL糖蛋白同种抗体,该抗体固定补体,导致血管内溶血,并导致循环中剩余细胞可检测到的KEL2抗原水平降低。抗原调节似乎并不能完全反映出具有较高抗原表达的RBC的去除,因为细胞在没有明显清除的情况下仍继续表现出抗原调节作用。与WT或FcγR基因敲除(KO)动物相比,遗传上缺乏补体的受试者表现出较少程度的不相容RBC清除和抗原调节,这表明补体在RBC清除中的作用。总之,此HTR模型可作为测试策略的平台,以下调抗原并抑制不相容的RBC清除,从而潜在地减轻输血危险。

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