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Sustained correction of B-cell development and function in a murine model of X-linked agammaglobulinemia (XLA) using retroviral-mediated gene transfer

机译:使用逆转录病毒介导的基因转移,在X连锁的丙种球蛋白血症(XLA)的鼠模型中持续校正B细胞的发育和功能

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摘要

X-linked agammaglobulinemia (XLA) is a human immunodeficiency caused by mutations in Bruton tyrosine kinase (Btk) and characterized by an arrest in early B-cell development, near absence of serum immunoglobulin, and recurrent bacteria infections. Using Btk- and Tec-deficient mice (BtkTec-/-) as a model for XLA, we determined if Btk gene therapy could correct this disorder. Bone marrow (BM) from 5-fluorouracil (5FU)-treated BtkTec-/- mice was transduced with a retroviral vector expressing human Btk and transplanted into BtkTec-/- recipients. Mice engrafted with transduced hematopoietic cells exhibited rescue of both primary and peripheral B-lineage development, revocery of peritoneal B1 B cells, and correction of serum immunoglobulin M (IgM) and IgG3 levels. Gene transfer also restored T-independent type II immune responses, and B-cell antigen receptor (BCR) proliferative responses. B-cell progenitors derived from Btk-transduced stem cells exhibited higher levels of Btk expression than non-B cells; and marking studies demonstrated a selective advantage for Btk-transduced B-lineage cells. BM derived from primary recipients also rescued Btk-dependent function in secondary hosts that had received a transplant. Together, these data demonstrate that gene transfer into hematopoietic stem cells can reconstitute Btk-dependent B-cell development and function in vivo, and strongly support the feasibility of pursuing Btk gene transfer for XLA.
机译:X连锁无球蛋白血症(XLA)是由Bruton酪氨酸激酶(Btk)突变引起的人类免疫缺陷,其特征是早期B细胞发育停止,几乎没有血清免疫球蛋白和细菌反复感染。使用Btk和Tec缺陷小鼠(BtkTec-/-)作为XLA模型,我们确定Btk基因疗法是否可以纠正这种疾病。用表达人Btk的逆转录病毒载体转导5-氟尿嘧啶(5FU)处理的BtkTec-/-小鼠的骨髓(BM),然后移植到BtkTec-/-受体中。植入转导的造血细胞的小鼠表现出对原代和外周血B系发育的挽救,腹膜B1 B细胞的撤回以及血清免疫球蛋白M(IgM)和IgG3水平的校正。基因转移还恢复了非T型II型免疫应答和B细胞抗原受体(BCR)增殖应答。源自Btk转导的干细胞的B细胞祖细胞显示的Btk表达水平高于非B细胞。标记研究证明了Btk转导的B谱系细胞具有选择性优势。来自主要受体的BM还在接受移植的次要宿主中拯救了Btk依赖性功能。总之,这些数据表明基因转移到造血干细胞中可以重构Btk依赖的B细胞在体内的发育和功能,并强烈支持为XLA追求Btk基因转移的可行性。

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