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Genetic correction of canine dystrophic epidermolysis bullosa mediated by retroviral vectors.

机译:逆转录病毒载体介导的犬营养不良性大疱性表皮松解的遗传校正。

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摘要

We have assessed the suitability of retroviral vectors for gene therapy of recessive dystrophic epidermolysis bullosa (RDEB) in dogs expressing a mutated collagen type VII. Isolation and analysis of the 9 kb dog collagen type VII cDNA identified the causative genetic mutation G1906S and disclosed the interspecies conservation of collagen type VII. Highly efficient transfer of the wild-type collagen type VII cDNA to both dog RDEB and human primary RDEB collagen type VII-null keratinocytes using recombinant vectors derived from LZRS-Ires-zeo and MSCV retroviruses achieved sustained and permanent expression of the transgene product. The expression and post-translational modification profile of the recombinant collagen type VII was comparable to that of the wild-type counterpart. The recombinant canine collagen type VII in human RDEB keratinocytes and dog cells corrected the observable defects caused by RDEB keratinocytes in cell cultures and in vitro reconstructed skin. Hypermotility was fully reverted inhuman RDEB keratinocytes, and strongly reduced in the dog RDEB cells. This observation suggests that not only infection efficiency but also high expression levels are required to ensure therapeutic efficacy in the presence of mutated gene products. Our results set the basis for preclinical gene therapy assays in the first immune-competent large animal model for an inherited skin disease and broaden the spectrum of preclinical and clinical applications of retroviral vectors in the transfer of large recombinant genes in epithelial cells.
机译:我们已经评估了逆转录病毒载体在表达突变型VII型胶原的犬中对隐性营养不良性表皮松解性大疱性脱氧核糖核酸(RDEB)基因治疗的适用性。 9 kb狗VII型胶原蛋白cDNA的分离和分析确定了致病性基因突变G1906S,并公开了VII型胶原的种间保存。使用衍生自LZRS-Ires-zeo和MSCV逆转录病毒的重组载体,将野生型VII型胶原cDNA高效转移至狗RDEB和人原代RDEB VII型零角质形成细胞中,从而实现了转基因产物的持续和永久表达。重组VII型胶原的表达和翻译后修饰谱与野生型对应蛋白相当。人RDEB角质形成细胞和狗细胞中的重组犬VII型胶原可纠正RDEB角质形成细胞在细胞培养和体外重建皮肤中引起的可观察到的缺陷。过度运动在人的RDEB角质形成细胞中被完全还原,并且在狗的RDEB细胞中强烈降低。该观察结果表明,在存在突变的基因产物的情况下,不仅需要感染效率而且需要高表达水平以确保治疗功效。我们的结果为第一个具有免疫功能的遗传性皮肤病大型动物模型的临床前基因治疗测定奠定了基础,并拓宽了逆转录病毒载体在上皮细胞中大型重组基因转移中的临床前和临床应用范围。

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