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微环 DNA 可增强和延长气道基因转移后的转基因表达。

Minicircle DNA Provides Enhanced and Prolonged Transgene Expression Following Airway Gene Transfer.

机构信息

UCL Institute of Child Health, 30 Guilford Street, London, WC1N 1EH, United Kingdom.

UCL Respiratory Centre for Inflammation and Tissue Repair, 5 University Street, London, WC1E 6JF, United Kingdom.

出版信息

Sci Rep. 2016 Mar 15;6:23125. doi: 10.1038/srep23125.

Abstract

Gene therapy for cystic fibrosis using non-viral, plasmid-based formulations has been the subject of intensive research for over two decades but a clinically viable product has yet to materialise in large part due to inefficient transgene expression. Minicircle DNA give enhanced and more persistent transgene expression compared to plasmid DNA in a number of organ systems but has not been assessed in the lung. In this study we compared minicircle DNA with plasmid DNA in transfections of airway epithelial cells. In vitro, luciferase gene expression from minicircles was 5-10-fold higher than with plasmid DNA. In eGFP transfections in vitro both the mean fluorescence intensity and percentage of cells transfected was 2-4-fold higher with minicircle DNA. Administration of equimolar amounts of DNA to mouse lungs resulted in a reduced inflammatory response and more persistent transgene expression, with luciferase activity persisting for 2 weeks from minicircle DNA compared to plasmid formulations. Transfection of equal mass amounts of DNA in mouse lungs resulted in a 6-fold increase in transgene expression in addition to more persistent transgene expression. Our findings have clear implications for gene therapy of airway disorders where plasmid DNA transfections have so far proven inefficient in clinical trials.

摘要

用非病毒、基于质粒的制剂进行囊性纤维化的基因治疗已经是二十多年来的密集研究课题,但由于转基因表达效率低下,一种临床可行的产品尚未实现。与质粒 DNA 相比,微环 DNA 在许多器官系统中可增强和更持久地表达转基因,但尚未在肺部进行评估。在这项研究中,我们比较了微环 DNA 与气道上皮细胞转染中的质粒 DNA。在体外,微环的荧光素酶基因表达比质粒 DNA 高 5-10 倍。在 eGFP 转染中,微环 DNA 的平均荧光强度和转染细胞的百分比均比质粒 DNA 高 2-4 倍。向小鼠肺部给予等量的 DNA 导致炎症反应减轻和转基因表达更持久,与质粒制剂相比,微环 DNA 的荧光素酶活性持续 2 周。在小鼠肺部转染等量的 DNA 可使转基因表达增加 6 倍,此外还可使转基因表达更持久。我们的研究结果对于气道疾病的基因治疗具有明确的意义,迄今为止,质粒 DNA 转染在临床试验中一直证明效率低下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4db7/4792149/e7ac3adf1307/srep23125-f1.jpg

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