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一种用于评估复制型和非复制型基因治疗剂特异性的体外人体模型系统。

An ex vivo human model system to evaluate specificity of replicating and non-replicating gene therapy agents.

作者信息

Rots M G, Elferink M G L, Gommans W M, Oosterhuis D, Schalk J A C, Curiel D T, Olinga P, Haisma H J, Groothuis G M M

机构信息

Department of Therapeutic Gene Modulation, Groningen University Institute for Drug Exploration, 9713 AV Groningen, The Netherlands.

出版信息

J Gene Med. 2006 Jan;8(1):35-41. doi: 10.1002/jgm.815.

Abstract

BACKGROUND

Inefficiency, aspecificity and toxicity of gene transfer vectors hamper gene therapy from showing its full potential. On this basis significant research currently focuses on developing vectors with improved infection and/or expression profiles. Screening assays with validity to the clinical context to determine improved characteristics of such agents are not readily available since this requires a close relationship to the human situation. We present a clinically relevant tissue slice technology to preclinically test improved vector characteristics.

METHODS

Slices were prepared from rat, mouse and human liver samples and from tumor tissue. Specificity of gene expression and replication was determined by infecting target and non-target tissue slices with transcriptionally retargeted adenoviruses and oncolytic viruses.

RESULTS

Using rat liver slices, we demonstrate efficient knob-mediated adenoviral infectivity. A favorable tumor-on/liver-off profile, resembling in vitro and mouse in vivo data, was shown for a tumor-specific transcriptionally retargeted adenovirus by infecting slices prepared from tumor or liver tissue. Similar liver-off data were found for mouse, rat and human samples (over 3-log lower activity of the tumor-specific promoter compared to cytomegalovirus (CMV)). More importantly, we show that this technology when applied to human livers is a powerful tool to determine aspecific replication of oncolytic viruses in liver tissue. A 2- to 6-log reduction in viral replication was observed for a tumor-specific oncolytic virus compared to the wild-type adenovirus.

CONCLUSIONS

The precision-cut tissue slice technology is a powerful method to test specificity and efficiency of gene transfer as well as of viral replication using human tissue.

摘要

背景

基因传递载体的低效性、非特异性和毒性阻碍了基因治疗充分发挥其潜力。在此基础上,目前大量研究集中在开发具有改善感染和/或表达谱的载体。由于需要与人类情况密切相关,目前尚缺乏对临床情况有效的筛选试验来确定此类药物的改善特性。我们提出一种临床相关的组织切片技术,用于临床前测试改善的载体特性。

方法

从大鼠、小鼠和人类肝脏样本以及肿瘤组织制备切片。通过用转录重定向腺病毒和溶瘤病毒感染靶组织和非靶组织切片来确定基因表达和复制的特异性。

结果

使用大鼠肝脏切片,我们证明了knob介导的腺病毒感染效率。通过感染由肿瘤或肝脏组织制备的切片,一种肿瘤特异性转录重定向腺病毒显示出类似于体外和小鼠体内数据的良好肿瘤开启/肝脏关闭谱。在小鼠、大鼠和人类样本中也发现了类似的肝脏关闭数据(与巨细胞病毒(CMV)相比,肿瘤特异性启动子的活性降低超过3个对数)。更重要的是,我们表明,当将该技术应用于人类肝脏时,它是确定溶瘤病毒在肝脏组织中非特异性复制的有力工具。与野生型腺病毒相比,一种肿瘤特异性溶瘤病毒的病毒复制减少了2至6个对数。

结论

精密切割组织切片技术是一种使用人体组织测试基因传递以及病毒复制的特异性和效率的有力方法。

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