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腺病毒载体:一种用于基因治疗的有前景的工具。

Adenoviral vectors: a promising tool for gene therapy.

作者信息

Ghosh Siddhartha S, Gopinath P, Ramesh A

机构信息

Department of Biotechnology, Indian Institute of Technology Guwahati, Guwahati-781039, Assam, India.

出版信息

Appl Biochem Biotechnol. 2006 Apr;133(1):9-29. doi: 10.1385/abab:133:1:9.

Abstract

Gene therapy is a promising tool for treatment of the human diseases that cannot be cured by rational therapies, and its primary success depends on suitable vectors to deliver therapeutic genes. Adenoviruses (Ads) are among the most commonly used vectors for gene therapy, second only to retroviruses. During the last decade, remarkable progress has been made in the development of Ad vectors and in the understanding of the toxicity related to the Ad vector system. Ad vector has certain advantages such as high transduction efficiency for different quiescent and dividing cell types and high levels of short-term expression to provide therapeutic benefits. However, researchers are facing the challenges associated with tissue-specific targeting of vectors and the vector-mediated immunogenicity. This review mainly focuses on the studies that have employed methods to improve Ad vectors and reduce viral toxicity for different applications. These methods include minimization or elimination of viral genes, retargeting of vector to the tissue of interest, and generation of immunocompromised recombinant vectors that lead to safer use of Ad vector systems that improve persistence of transgene expression. Moreover, the therapeutic applications of Ad vectors for liver-targeted gene therapy, suicide gene therapy, delivery of small interfering RNA, and production of recombinant vaccine under regulated conditions used in clinical trials are discussed.

摘要

基因治疗是一种治疗无法通过常规疗法治愈的人类疾病的有前景的工具,其主要成功取决于合适的载体来递送治疗性基因。腺病毒(Ads)是基因治疗中最常用的载体之一,仅次于逆转录病毒。在过去十年中,腺病毒载体的开发以及对与腺病毒载体系统相关毒性的理解取得了显著进展。腺病毒载体具有某些优势,例如对不同静止和分裂细胞类型的高转导效率以及高水平的短期表达以提供治疗益处。然而,研究人员面临着与载体的组织特异性靶向和载体介导的免疫原性相关的挑战。本综述主要关注那些采用方法来改进腺病毒载体并降低其在不同应用中的病毒毒性的研究。这些方法包括最小化或消除病毒基因、将载体重新靶向到感兴趣的组织以及生成免疫缺陷重组载体,从而更安全地使用腺病毒载体系统,提高转基因表达的持久性。此外,还讨论了腺病毒载体在肝靶向基因治疗、自杀基因治疗、小干扰RNA递送以及在临床试验中使用的受调控条件下生产重组疫苗等治疗应用。

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