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通过表面展示的单链抗体和融合分子将慢病毒载体靶向特定细胞类型。

Targeting lentiviral vector to specific cell types through surface displayed single chain antibody and fusogenic molecule.

机构信息

Mork Family Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA 90089, USA.

出版信息

Virol J. 2010 Feb 11;7:35. doi: 10.1186/1743-422X-7-35.

Abstract

BACKGROUND

Viral delivery remains one of the most commonly used techniques today in the field of gene therapy. However, one of the remaining hurdles is the off-targeting effect of viral delivery. To overcome this obstacle, we recently developed a method to incorporate an antibody and a fusogenic molecule (FM) as two distinct molecules into the lentiviral surface. In this report, we expand this strategy to utilize a single chain antibody (SCAb) for targeted transduction.

RESULTS

Two versions of the SCAb were generated to pair with our various engineered FMs by linking the heavy chain and the light chain variable domains of the anti-CD20 antibody (alphaCD20) via a GS linker and fusing them to the hinge-CH2-CH3 region of human IgG. The resulting protein was fused to either a HLA-A2 transmembrane domain or a VSVG transmembrane domain for anchoring purpose. Lentiviral vectors generated with either version of the SCAb and a selected FM were then characterized for binding and fusion activities in CD20-expressing cells.

CONCLUSION

Certain combinations of the SCAb with various FMs could result in an increase in viral transduction. This two-molecule lentiviral vector system design allows for parallel optimization of the SCAb and FMs to improve targeted gene delivery.

摘要

背景

病毒传递仍然是基因治疗领域中最常用的技术之一。然而,仍然存在一个障碍,即病毒传递的脱靶效应。为了克服这一障碍,我们最近开发了一种将抗体和融合分子(FM)作为两种不同的分子整合到慢病毒表面的方法。在本报告中,我们扩展了这一策略,利用单链抗体(SCAb)进行靶向转导。

结果

生成了两种版本的 SCAb,通过将抗 CD20 抗体(alphaCD20)的重链和轻链可变区通过 GS 接头连接,并将它们融合到人 IgG 的铰链-CH2-CH3 区域,与我们的各种工程化 FM 配对。为了锚定目的,所得蛋白融合到 HLA-A2 跨膜域或 VSVG 跨膜域。用 SCAb 的任一种版本和选定的 FM 生成的慢病毒载体在表达 CD20 的细胞中进行结合和融合活性的特征分析。

结论

SCAb 与各种 FM 的某些组合可能导致病毒转导的增加。这种双分子慢病毒载体系统设计允许 SCAb 和 FM 的并行优化,以提高靶向基因传递。

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