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High-level transgene expression in induced pluripotent stem cell–derived megakaryocytes: correction of Glanzmann thrombasthenia

机译:诱导的多能干细胞衍生的巨核细胞中的高水平转基因表达:纠正格兰仕曼血栓症

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摘要

Megakaryocyte-specific transgene expression in patient-derived induced pluripotent stem cells (iPSCs) offers a new approach to study and potentially treat disorders affecting megakaryocytes and platelets. By using a Gp1ba promoter, we developed a strategy for achieving a high level of protein expression in human megakaryocytes. The feasibility of this approach was demonstrated in iPSCs derived from two patients with Glanzmann thrombasthenia (GT), an inherited platelet disorder caused by mutations in integrin αIIbβ3. Hemizygous insertion of Gp1ba promoter-driven human αIIb complementary DNA into the AAVS1 locus of iPSCs led to high αIIb messenger RNA and protein expression and correction of surface αIIbβ3 in megakaryocytes. Agonist stimulation of these cells displayed recovery of integrin αIIbβ3 activation. Our findings demonstrate a novel approach to studying human megakaryocyte biology as well as functional correction of the GT defect, offering a potential therapeutic strategy for patients with diseases that affect platelet function.
机译:患者来源的诱导多能干细胞(iPSC)中巨核细胞特异的转基因表达为研究和潜在治疗影响巨核细胞和血小板的疾病提供了一种新方法。通过使用Gp1ba启动子,我们开发了一种在人类巨核细胞中实现高水平蛋白表达的策略。这种方法的可行性在来自两名患有Glanzmann血小板减少症(GT)的患者的iPSC中得到了证实,该患者是由整合素αIIbβ3突变引起的遗传性血小板疾病。 Gp1ba启动子驱动的人αIIb互补DNA杂合插入iPSC的AAVS1位点导致了高αIIb信使RNA和蛋白表达以及巨核细胞表面αIIbβ3的校正。这些细胞的激动剂刺激显示整联蛋白αIIbβ3活化的恢复。我们的发现证明了一种研究人类巨核细胞生物学以及GT缺陷功能纠正的新颖方法,为患有影响血小板功能的疾病的患者提供了潜在的治疗策略。

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