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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Polymorphic Sirpa is the genetic determinant for NOD-based mouse lines to achieve efficient human cell engraftment
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Polymorphic Sirpa is the genetic determinant for NOD-based mouse lines to achieve efficient human cell engraftment

机译:多态性Sirpa是基于NOD的小鼠品系实现有效人类细胞植入的遗传决定因素

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Current mouse lines efficient for human cell xenotransplantation are backcrossed into NOD mice to introduce its multiple immunodeficient phenotypes. Our positional genetic study has located the NOD-specific polymorphic Sirpa as a molecule responsible for its high xenograft efficiency: it recognizes human CD47 and the resultant signaling may cause NOD macrophages not to engulf human grafts. In the present study, we established C57BL/6.Rag2 null//2rgnull mice harboring NOD-Sirpa (BRGS). BRGS mice engrafted human hematopoiesis with an efficiency that was equal to or even better than that of the NOD.Rag1null//2rgnull strain, one of the best xenograft models. Consequently, BRGS mice are free from other NOD-related abnormalities; for example, they have normalized C5 function that enables the evaluation of complement-dependent cytotoxicity of antibodies against human grafts in the humanized mouse model. Our data show that efficient human cell engraftment found in NOD-based models is mounted solely by their polymorphic Sirpa. The simplified BRGS line should be very useful in future studies of human stem cell biology.
机译:将目前有效用于人类细胞异种移植的小鼠品系回交到NOD小鼠中,以引入其多种免疫缺陷型。我们的位置遗传研究已将NOD特异性多态性Sirpa定位为负责其高异种移植效率的分子:它识别人CD47,并且所产生的信号传导可能导致NOD巨噬细胞不吞噬人移植物。在本研究中,我们建立了带有NOD-Sirpa(BRGS)的C57BL / 6.Rag2 null // 2rgnull小鼠。 BRGS小鼠的造血功能与NOD.Rag1null // 2rgnull菌株(最好的异种移植模型之一)相同,甚至更高。因此,BRGS小鼠没有其他与NOD相关的异常。例如,它们具有标准化的C5功能,能够在人源化小鼠模型中评估针对人类移植物的抗体的补体依赖性细胞毒性。我们的数据表明,在基于NOD的模型中发现的有效人类细胞植入仅通过其多态性Sirpa来实现。简化的BRGS品系在人类干细胞生物学的未来研究中应该非常有用。

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