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首页> 外文期刊>EMBO Molecular Medicine >Genome editing for scalable production of alloantigen-free lentiviral vectors for in vivo gene therapy
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Genome editing for scalable production of alloantigen-free lentiviral vectors for in vivo gene therapy

机译:基因组编辑可大规模生产用于体内基因治疗的无同种抗原的慢病毒载体

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摘要

Abstract Lentiviral vectors (LV) are powerful and versatile vehicles for gene therapy. However, their complex biological composition challenges large-scale manufacturing and raises concerns for in vivo applications, because particle components and contaminants may trigger immune responses. Here, we show that producer cell-derived polymorphic class-I major histocompatibility complexes (MHC-I) are incorporated into the LV surface and trigger allogeneic T-cell responses. By disrupting the beta-2 microglobulin gene in producer cells, we obtained MHC-free LV with substantially reduced immunogenicity. We introduce this targeted editing into a novel stable LV packaging cell line, carrying single-copy inducible vector components, which can be reproducibly converted into high-yield LV producers upon site-specific integration of the LV genome of interest. These LV efficiently transfer genes into relevant targets and are more resistant to complement-mediated inactivation, because of reduced content of the vesicular stomatitis virus envelope glycoprotein G compared to vectors produced by transient transfection. Altogether, these advances support scalable manufacturing of alloantigen-free LV with higher purity and increased complement resistance that are better suited for in vivo gene therapy.
机译:摘要慢病毒载体(LV)是功能强大且用途广泛的基因疗法载体。然而,由于颗粒成分和污染物可能触发免疫反应,因此它们复杂的生物组成对大规模生产提出了挑战,并引起了体内应用的关注。在这里,我们显示出生产者细胞来源的多态性I类主要组织相容性复合体(MHC-1)被纳入LV表面并触发同种异体T细胞反应。通过破坏生产细胞中的beta-2微球蛋白基因,我们获得了无MHC的LV,免疫原性大大降低。我们将这种有针对性的编辑引入一种新型的稳定的LV包装细胞系,该细胞系携带单拷贝可诱导的载体成分,可以在目标LV基因组的位点特异性整合后将其可复制地转化为高产量的LV生产者。这些LV有效地将基因转移到相关靶标中,并且对水疱性口炎病毒包膜糖蛋白G的含量与通过瞬时转染产生的载体相比降低,因此对补体介导的失活具有更高的抵抗力。总而言之,这些进展支持可扩展生产的无异源抗原的LV,具有更高的纯度和更高的补体抗性,更适合于体内基因治疗。

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