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双靶向慢病毒载体对原代人内皮细胞的高效靶向转导

Efficient targeted transduction of primary human endothelial cells with dual-targeted lentiviral vectors.

作者信息

Pariente Nonia, Mao Si-Hua, Morizono Kouki, Chen Irvin S Y

机构信息

Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, CA 90095, USA.

出版信息

J Gene Med. 2008 Mar;10(3):242-8. doi: 10.1002/jgm.1151.

Abstract

Angiogenesis is a rate-limiting factor for numerous human diseases. Angiogenic vessels and also the endothelium of certain organs such as the lung display molecular addresses that can be exploited for the selective delivery of gene therapeutics. Lentiviral vectors (LVs) are powerful tools for stable gene delivery but their integration and expression in undesired cell types poses a serious safety concern. We have developed a dual-targeted LV that can specifically target primary endothelial cells (ECs). Cell selectivity is achieved during entry, using a modified Sindbis virus envelope, and during transcription, with an EC-specific promoter. We evaluated four surface markers for EC targeting and seven promoter sequences from genes preferentially expressed in ECs. The efficiency and specificity of the double targeted vector were assayed in a panel of human primary cultures and tumor cell lines. A vector targeted to CD146, an endothelial adhesion molecule, and carrying a derivative of the EC tyrosine kinase Tie2 promoter, increased specificity of transduction up to 50 times and was also effective at selectively transducing ECs in a mixed coculture with human fibroblasts. The vector presented here is a potentially powerful tool that could be used in a variety of human diseases.

摘要

血管生成是多种人类疾病的限速因素。血管生成性血管以及某些器官(如肺)的内皮细胞显示出分子标记,可用于基因治疗药物的选择性递送。慢病毒载体(LVs)是稳定基因递送的强大工具,但其在非靶细胞类型中的整合和表达引发了严重的安全问题。我们开发了一种双靶向慢病毒载体,可特异性靶向原代内皮细胞(ECs)。通过使用修饰的辛德毕斯病毒包膜在进入过程中以及利用内皮细胞特异性启动子在转录过程中实现细胞选择性。我们评估了用于内皮细胞靶向的四种表面标志物以及在内皮细胞中优先表达的基因的七个启动子序列。在一组人类原代培养物和肿瘤细胞系中检测了双靶向载体的效率和特异性。一种靶向内皮细胞粘附分子CD146并携带内皮细胞酪氨酸激酶Tie2启动子衍生物的载体,将转导特异性提高了50倍,并且在与人类成纤维细胞的混合共培养物中选择性转导内皮细胞方面也很有效。本文介绍的载体是一种潜在的强大工具,可用于多种人类疾病。

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