经逆行输尿管入路的腺相关病毒介导的基因转移至肾小管细胞。

Nephron Extra Pub Date : 2011-01-01 Epub Date: 2011-11-23 DOI:10.1159/000333071
Daniel C Chung, Ben Fogelgren, Kwon Moo Park, Jessica Heidenberg, Xiaofeng Zuo, Liwei Huang, Jean Bennett, Joshua H Lipschutz
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引用次数: 26

摘要

背景/目的:基因治疗涉及外源DNA的传递,以提供治疗蛋白。理想情况下,基因治疗载体应该是无毒的,非免疫原性的,容易生产的,有效地保护和传递DNA到靶细胞。方法:腺相关病毒(AAV)具有以上优点,缺点很少,目前已有100多株分离株。我们之前的研究表明,aav介导的基因疗法可以用于恢复Leber先天性黑朦患者的视力,这是一种儿童失明的疾病。结果:在体外培养和小鼠体内实验中,我们发现新的重组蛋白AAV2/8和AAV2/9都能高效地转导肾小管细胞。此外,我们调整和修改了逆行方法,以允许最佳的转基因递送到肾小管细胞,进一步减少免疫原性反应的风险。结论:我们相信重组AAV2,特别是AAV2/8,通过逆行途径将基因传递到肾小管细胞代表了一种可行的方法,用于基因治疗多种肾脏疾病,从常染色体显性多囊肾病到急性肾损伤。
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Adeno-Associated Virus-Mediated Gene Transfer to Renal Tubule Cells via a Retrograde Ureteral Approach.

Background/aims: Gene therapy involves delivery of exogenous DNA to provide a therapeutic protein. Ideally, a gene therapy vector should be non-toxic, non-immunogenic, easy to produce, and efficient in protecting and delivering DNA into target cells.

Methods: Adeno-associated virus (AAV) offers these advantages and few, if any, disadvantages, and over 100 isolates exist. We previously showed that AAV-mediated gene therapy can be used to restore vision to patients with Leber's congenital amaurosis, a disease of childhood blindness.

Results: Here we show that novel recombinant AAV2/8 and AAV2/9 transduce kidney tubule cells with high efficiency both in vitroin cell culture and in vivoin mice. In addition, we adapted and modified a retrograde approach to allow for optimal transgene delivery to renal tubular cells that further minimizes the risk of an immunogenic reaction.

Conclusions: We believe that recombinant AAV2, especially AAV2/8, gene delivery to renal tubule cells via a retrograde approach represents a viable method for gene therapy for a multitude of renal disorders ranging from autosomal dominant polycystic kidney disease to acute kidney injury.

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审稿时长
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期刊介绍: An open-access subjournal to Nephron. ''Nephron EXTRA'' publishes additional high-quality articles that cannot be published in the main journal ''Nephron'' due to space limitations.
期刊最新文献
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