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用于眼部长期基因表达的睡美人-杆状病毒杂交载体。

Sleeping Beauty-baculovirus hybrid vectors for long-term gene expression in the eye.

机构信息

A. I. Virtanen Institute for Molecular Sciences, Department of Biotechnology and Molecular Medicine, University of Eastern Finland, Kuopio, Finland.

出版信息

J Gene Med. 2014 Jan-Feb;16(1-2):40-53. doi: 10.1002/jgm.2756.

Abstract

BACKGROUND

A baculovirus vector is capable of efficiently transducing many nondiving and diving cell types. However, the potential of baculovirus is restricted for many gene delivery applications as a result of the transient gene expression that it mediates. The plasmid-based Sleeping Beauty (SB) transposon system integrates transgenes into target cell genome efficiently with a genomic integration pattern that is generally considered safer than the integration of many other integrating vectors; yet efficient delivery of therapeutic genes into cells of target tissues in vivo is a major challenge for nonviral gene therapy. In the present study, SB was introduced into baculovirus to obtain novel hybrid vectors that would combine the best features of the two vector systems (i.e. effective gene delivery and efficient integration into the genome), thus circumventing the major limitations of these vectors.

METHODS

We constructed and optimized SB-baculovirus hybrid vectors that bear either SB100x transposase or SB transposon in the forward or reverse orientations with respect to the viral backbone The functionality of the novel hybrid vectors was investigated in cell cultures and in a proof-of-concept study in the mouse eye.

RESULTS

The hybrid vectors showed high and sustained transgene expression that remained stable and demonstrated no signs of decline during the 2 months follow-up in vitro. These results were verified in the mouse eye where persistent transgene expression was detected two months after intravitreal injection.

CONCLUSIONS

Our results confirm that (i) SB-baculovirus hybrid vectors mediate long-term gene expression in vitro and in vivo, and (ii) the hybrid vectors are potential new tools for the treatment of ocular diseases.

摘要

背景

杆状病毒载体能够有效地转导许多非分裂和分裂细胞类型。然而,由于它介导的瞬时基因表达,杆状病毒的潜力在许多基因传递应用中受到限制。基于质粒的睡眠美人(SB)转座子系统通过一种通常被认为比许多其他整合载体更安全的基因组整合模式有效地将转基因整合到靶细胞基因组中;然而,将治疗基因有效地递送到体内靶组织的细胞中是对非病毒基因治疗的一个主要挑战。在本研究中,将 SB 引入杆状病毒中,以获得新型杂交载体,从而结合两种载体系统的最佳特征(即有效基因传递和高效整合到基因组中),从而规避这些载体的主要局限性。

方法

我们构建并优化了 SB-杆状病毒杂交载体,这些载体正向或反向携带 SB100x 转座酶或 SB 转座子相对于病毒骨架。在细胞培养和小鼠眼的概念验证研究中研究了新型杂交载体的功能。

结果

杂交载体显示出高且持续的转基因表达,在体外随访 2 个月期间保持稳定,没有下降的迹象。这些结果在小鼠眼中得到了验证,在眼内注射后两个月检测到持续的转基因表达。

结论

我们的结果证实:(i)SB-杆状病毒杂交载体在体外和体内介导长期基因表达;(ii)杂交载体可能是治疗眼部疾病的新工具。

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