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泡沫病毒-腺病毒杂交载体用于关节炎的基因治疗。

Foamy virus-adenovirus hybrid vectors for gene therapy of the arthritides.

机构信息

University of Würzburg, Department of Virology and Immunobiology, Würzburg, Germany.

出版信息

J Gene Med. 2013 Mar-Apr;15(3-4):155-67. doi: 10.1002/jgm.2705.

Abstract

BACKGROUND

Genetic treatments of chronic arthritic conditions are essentially dependent on safe and efficient vector systems. To combine features of the efficient transduction of adenovirus vectors with the advantage of stable integration into the host cell genome of apathogenic prototype foamy virus vectors, hybrid vectors (FAD) have been established. In the present study, we have generated and investigated the use of safe FAD vectors for direct gene delivery to joints.

METHODS

We generated recombinant FAD encoding enhanced green fluorescent protein (EGFP) or human interleukin 1 receptor antagonist protein (IL1RA) cDNA, and explored their transgene expression profile, as well as the bioactivity of the IL1RA transgene in vitro. The feasibility of IL1RA gene delivery to articular tissues was investigated in a pilot study employing direct FAD injections to the knee joints of Wistar rats.

RESULTS

FAD vectors efficiently transduced human or rat fibroblasts with EGFP or IL1RA transgene in vitro. Levels of IL1RA transgene expression were high, stable and functional in vitro. Transduced synovial fibroblasts and high levels of IL1RA protein (10-35 ng/ml) could be detected in vivo in the synovium of Wistar rats 3-5 days after injection of FAD vectors to the knee joints.

CONCLUSIONS

Our results indicate that FAD vectors are capable of efficient in vivo gene transfer to synovium and merit further investigation as a means of providing efficient and long-term intra-articular transgene expression for treatment of the arthritides.

摘要

背景

慢性关节炎的基因治疗在很大程度上依赖于安全有效的载体系统。为了结合腺病毒载体高效转导的特点和无致病原型泡沫病毒载体稳定整合到宿主细胞基因组的优势,我们构建了杂交载体(FAD)。在本研究中,我们生成并研究了使用安全的 FAD 载体直接将基因递送到关节。

方法

我们生成了编码增强型绿色荧光蛋白(EGFP)或人白细胞介素 1 受体拮抗剂蛋白(IL1RA)cDNA 的重组 FAD,并探索了它们的转基因表达谱,以及 IL1RA 转基因在体外的生物活性。我们通过直接将 FAD 注射到 Wistar 大鼠膝关节,研究了 IL1RA 基因递送到关节组织的可行性。

结果

FAD 载体在体外高效转导人或大鼠成纤维细胞的 EGFP 或 IL1RA 转基因。在体外,IL1RA 转基因的表达水平高、稳定且具有功能。转导的滑膜成纤维细胞和高水平的 IL1RA 蛋白(10-35 ng/ml)可在注射 FAD 载体后 3-5 天的大鼠膝关节滑膜中检测到。

结论

我们的结果表明,FAD 载体能够有效地将基因体内转移到滑膜中,值得进一步研究,作为提供关节炎治疗中有效和长期关节内转基因表达的一种手段。

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