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Genomic Context Vectors and Artificial Chromosomes for Cystic Fibrosis Gene Therapy

机译:囊性纤维化基因治疗的基因组背景载体和人工染色体

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Cystic fibrosis (CF) is caused by mutations of the CF transmembrane conductance regulator (CFTR) gene, which encodes a cAMP dependent chloride channel whose expression is finely tuned in space and time. Gene therapy approaches to CF lung disease have demonstrated partial efficacy and short-lived CFTR expression in the airways. Drawbacks in the use of classical gene transfer vectors include immune response to viral proteins or to unmethylated CpG motifs contained in bacterially-derived vector DNA, and shut-off of viral promoters.nnThese limitations could be overcome by providing stable maintenance and expression of the CFTR gene inside the defective cells. This strategy makes use of large fragments of DNA of various sizes containing the CFTR transgene and its relevant regulatory regions, (genomic context vectors [GCVs], reaching ultimate complexity in the form of an artificial chromosome [AC]) as vector for the transgene. Appropriate regulation in space and time would be achieved by the presence of the endogenous promoter and other control elements, while retention in daughter cells could be ensured by the presence of sequences which guarantee episomal replication.nnIn this review, we describe recent advances in GCVs and ACs and the technology underlying their construction. These vectors have been shown to be suitable for delivery and expression of therapeutically relevant genes, including CFTR. The major issue which now limits their routine use is delivery inefficiency. Once this issue is resolved, we will be closer to achieving the goal of regulated gene therapy for CF.
机译:囊性纤维化(CF)是由CF跨膜电导调节剂(CFTR)基因的突变引起的,该基因编码依赖cAMP的氯离子通道,其表达在时空上可以精确调节。 CF肺疾病的基因治疗方法已证明其在气道中具有部分疗效和CFTR表达短暂。使用经典基因转移载体的缺点包括对病毒蛋白质或细菌衍生的载体DNA中包含的未甲基化CpG基序的免疫反应以及病毒启动子的关闭.nn通过提供稳定的CFTR维持和表达可以克服这些局限性缺陷细胞内的基因。该策略利用包含CFTR转基因及其相关调控区的各种大小的DNA大片段(基因组背景载体[GCV],以人工染色体[AC]的形式达到最终的复杂性)作为转基因载体。通过存在内源性启动子和其他控制元件可以实现对空间和时间的适当调节,而可以通过存在保证游离复制的序列来确保在子代细胞中的保留。 AC及其基础技术。已经显示这些载体适合于递送和表达治疗相关基因,包括CFTR。现在限制其常规使用的主要问题是输送效率低下。解决此问题后,我们将更接近实现CF基因调控疗法的目标。

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