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杆状病毒对软骨细胞的转导引发α/β干扰素并抑制转基因表达。

Baculovirus transduction of chondrocytes elicits interferon-alpha/beta and suppresses transgene expression.

作者信息

Lee Hsiao-Ping, Matsuura Yoshiharu, Chen Huang-Chi, Chen Yen-Lin, Chuang Ching-Kuang, Abe Takayuki, Hwang Shiaw-Min, Shiah Hsiao-Chiao, Hu Yu-Chen

机构信息

Department of Chemical Engineering, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

J Gene Med. 2009 Apr;11(4):302-12. doi: 10.1002/jgm.1299.

Abstract

BACKGROUND

Baculovirus is an effective vector for gene delivery into primary chondrocytes and repeated baculovirus transduction (i.e. supertransduction) appears to be promising for prolonging transgene expression, but how supertransduction may influence baculovirus-mediated gene delivery is unknown.

METHODS

We first investigated whether prior baculovirus transduction suppressed the ensuing transgene expression mediated by the supertransduced baculovirus, and then examined whether baculovirus triggered the expression of various cytokines. Whether interferon-alpha and -beta (IFN-alpha/beta) suppressed the transgene expression as well as the pivotal step responsible for the attenuated transgene expression were examined.

RESULTS

Baculovirus transduction of chondrocytes elicited an immediate yet transient expression of IFN-alpha/beta, which repressed the transgene expression in a dose-dependent manner. The attenuation was observed for transgene expression driven by different promoters and resulted neither from internalization or nuclear import of baculovirus. Moreover, the attenuation was alleviated if supertransduction was performed when IFN-alpha/beta responses diminished. Baculovirus transduction also triggered the expression of tumor necrosis factor-alpha and interleukin (IL)-6, but not IL-1beta. Despite the induction of these responses, supertransduction of chondrocytes with a baculovirus expressing bone morphogenetic protein-2 successfully enhanced the chondrogenic differentiation and matrix synthesis.

CONCLUSIONS

Baculovirus transduction of primary chondrocytes elicits antiviral effects that suppress transgene expression. Nonetheless, baculovirus supertransduction comprises a feasible approach to extend transgene expression for cartilage engineering.

摘要

背景

杆状病毒是一种将基因导入原代软骨细胞的有效载体,重复杆状病毒转导(即超级转导)似乎有望延长转基因表达,但超级转导如何影响杆状病毒介导的基因传递尚不清楚。

方法

我们首先研究了先前的杆状病毒转导是否会抑制随后由超级转导的杆状病毒介导的转基因表达,然后检测杆状病毒是否会触发各种细胞因子的表达。研究了α和β干扰素(IFN-α/β)是否会抑制转基因表达以及导致转基因表达减弱的关键步骤。

结果

软骨细胞的杆状病毒转导引发了IFN-α/β的即时但短暂的表达,其以剂量依赖性方式抑制转基因表达。观察到由不同启动子驱动的转基因表达减弱,且这既不是由杆状病毒的内化或核导入引起的。此外,如果在IFN-α/β反应减弱时进行超级转导,这种减弱就会得到缓解。杆状病毒转导还触发了肿瘤坏死因子-α和白细胞介素(IL)-6的表达,但未触发IL-1β的表达。尽管诱导了这些反应,但用表达骨形态发生蛋白-2的杆状病毒对软骨细胞进行超级转导成功增强了软骨形成分化和基质合成。

结论

原代软骨细胞的杆状病毒转导引发抗病毒效应,抑制转基因表达。尽管如此,杆状病毒超级转导仍是一种可行的方法,可用于延长软骨工程中的转基因表达。

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