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Successful Expansion but Not Complete Restriction of Tropism of Adeno-Associated Virus by In Vivo Biopanning of Random Virus Display Peptide Libraries

机译:随机病毒展示肽库的体内生物淘选成功地扩增但不完全限制腺相关病毒的趋向性

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摘要

Targeting viral vectors to certain tissues in vivo has been a major challenge in gene therapy. Cell type-directed vector capsids can be selected from random peptide libraries displayed on viral capsids in vitro but so far this system could not easily be translated to in vivo applications. Using a novel, PCR-based amplification protocol for peptide libraries displayed on adeno-associated virus (AAV), we selected vectors for optimized transduction of primary tumor cells in vitro. However, these vectors were not suitable for transduction of the same target cells under in vivo conditions. We therefore performed selections of AAV peptide libraries in vivo in living animals after intravenous administration using tumor and lung tissue as prototype targets. Analysis of peptide sequences of AAV clones after several rounds of selection yielded distinct sequence motifs for both tissues. The selected clones indeed conferred gene expression in the target tissue while gene expression was undetectable in animals injected with control vectors. However, all of the vectors selected for tumor transduction also transduced heart tissue and the vectors selected for lung transduction also transduced a number of other tissues, particularly and invariably the heart. This suggests that modification of the heparin binding motif by target-binding peptide insertion is necessary but not sufficient to achieve tissue-specific transgene expression. While the approach presented here does not yield vectors whose expression is confined to one target tissue, it is a useful tool for in vivo tissue transduction when expression in tissues other than the primary target is uncritical.
机译:在体内将病毒载体靶向某些组织一直是基因治疗中的主要挑战。可以从体外在病毒衣壳上展示的随机肽库中选择针对细胞类型的载体衣壳,但是到目前为止,该系统尚不容易转化为体内应用。使用针对腺相关病毒(AAV)上显示的肽库的新型,基于PCR的扩增方案,我们选择了用于体外优化原代肿瘤细胞转导的载体。但是,这些载体不适合在体内条件下转导相同的靶细胞。因此,我们在使用肿瘤和肺组织作为原型靶点静脉给药后,在活体动物体内进行了AAV肽库的选择。经过数轮选择后,对AAV克隆的肽序列进行分析,得出了两种组织的不同序列基序。所选克隆确实赋予了靶组织基因表达,而在注射有对照载体的动物中则无法检测到基因表达。然而,选择用于肿瘤转导的所有载体也转导了心脏组织,并且选择了用于肺转导的载体也转导了许多其他组织,特别是恒定地转导了心脏。这表明通过靶结合肽插入来修饰肝素结合基序是必要的,但不足以实现组织特异性转基因表达。尽管此处介绍的方法未产生表达仅限于一个靶标组织的载体,但当在非主要靶标之外的组织中表达时,它是体内组织转导的有用工具。

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